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YearReferenceResource
2022Sun, S.Y., Segev-Zarko, L.A., Chen, M., Pintilie, G.D., Schmid, M.F., Ludtke, S.J., Boothroyd, J.C., Chiu, W. 2022. "Cryo-ET of Toxoplasma parasites gives subnanometer insight into tubulin-based structures." Proc Natl Acad Sci U S A. 119(6). Epub 2022/02/06.SSRLStanford-SLAC Cryo-EM CenterCryo-EM10.1073/pnas.2111661119
2022Zhou, W., Bammes, B., Mitchell, P.G., Betz, K., Chiu, W. 2022. "Electron crystallography of chiral and non-chiral small molecules." Ultramicroscopy 232:113417.SSRLStanford-SLAC Cryo-EM CenterCryo-EM10.1016/j.ultramic.2021.113417
2021Alves, E. E. N., D. R. Ortega Rodriguez, P. D. A. Rocha, L. Vergütz, L. Santini Junior, D. Hesterberg, L. C. R. Pessenda, M. Tomazello-Filho and L. M. D. Costa. Synchrotron-based X-ray microscopy for assessing elements distribution and speciation in mangrove tree-rings. Results in Chemistry 3.Alves, E. E. N., D. R. Ortega Rodriguez, P. D. A. Rocha, L. Vergütz, L. Santini Junior, D. Hesterberg, L. C. R. Pessenda, M. Tomazello-Filho and L. M. D. CostaSynchrotron-based X-ray microscopy for assessing elements distribution and speciation in mangrove tree-ringsResults in Chemistry310.1016/j.rechem.2021.100121
2021Akmakjian, G.Z., Riaz, N., and Guerinot, M.L.  2021. Photoprotection during iron deficiency is mediated by the bHLH transcription factors PYE and ILR3. PNAS, 118 (40) e2024918118.NSLS-IICenter for BioMolecular StructureX-Ray Fluorescence Imaging (XRF)10.1073/pnas.2024918118(related highlight) (feature story)
2021Arutunian, S. G., A. V. Margaryan, G. S. Harutyunyan, E. G. Lazareva, M. Chung, D. Kwak and D. S. Gyulamiryan. Vibrating wire monitor: Versatile instrumentation for particle and photon beam measurements with wide dynamic range. Journal of Instrumentation 16(1).Arutunian, S. G., A. V. Margaryan, G. S. Harutyunyan, E. G. Lazareva, M. Chung, D. Kwak and D. S. GyulamiryanVibrating wire monitor: Versatile instrumentation for particle and photon beam measurements with wide dynamic rangeJournal of Instrumentation16(1), 10.1088/1748-0221/16/01/R01001
2021Ben-Sasson, A. J., J. L. Watson, W. Sheffler, M. C. Johnson, A. Bittleston, L. Somasundaram, J. Decarreau, F. Jiao, J. Chen, I. Mela, A. A. Drabek, S. M. Jarrett, S. C. Blacklow, C. F. Kaminski, G. L. Hura, J. J. De Yoreo, J. M. Kollman, H. Ruohola-Baker, E. Derivery and D. Baker. Design of biologically active binary protein 2D materials. Nature 589(7842), 468-473.ALSStructurally Integrated Biology for the Life Sciences Solution X-Ray Scattering (SAXS)Ben-Sasson, A. J., J. L. Watson, W. Sheffler, M. C. Johnson, A. Bittleston, L. Somasundaram, J. Decarreau, F. Jiao, J. Chen, I. Mela, A. A. Drabek, S. M. Jarrett, S. C. Blacklow, C. F. Kaminski, G. L. Hura, J. J. De Yoreo, J. M. Kollman, H. Ruohola-Baker, E. Derivery and D. BakerDesign of biologically active binary protein 2D materialsNature589(7842), 468-47310.1038/s41586-020-03120-8(related highlight)
2021Buscagan, T. M., K. A. Perez, A. O. Maggiolo, D. C. Rees and T. Spatzal. Structural Characterization of Two CO Molecules Bound to the Nitrogenase Active Site. Angewandte Chemie - International Edition 60(11), 5704-5707.Buscagan, T. M., K. A. Perez, A. O. Maggiolo, D. C. Rees and T. SpatzalStructural Characterization of Two CO Molecules Bound to the Nitrogenase Active SiteAngewandte Chemie - International Edition60(11), 5704-570710.1002/anie.202015751
2021Byrne, N. J., A. C. Lee, J. Kostas, J. C. Reid, A. T. Partridge, S. S. So, J. E. Cowan, P. Abeywickrema, H. Huang, M. Zebisch, J. J. Barker, S. M. Soisson, A. Brooun and H. P. Su. Development of a robust crystallization platform for immune receptor TREM2 using a crystallization chaperone strategy. Protein Expression and Purification 179.Byrne, N. J., A. C. Lee, J. Kostas, J. C. Reid, A. T. Partridge, S. S. So, J. E. Cowan, P. Abeywickrema, H. Huang, M. Zebisch, J. J. Barker, S. M. Soisson, A. Brooun and H. P. SuDevelopment of a robust crystallization platform for immune receptor TREM2 using a crystallization chaperone strategyProtein Expression and Purification17910.1016/j.pep.2020.105796
2021Chen, M. A. and B. D. Kocar. Development of a novel microfluidic device to study metal geochemistry in situ using X-ray fluorescence microprobe spectroscopy. Journal of Synchrotron Radiation 28, 461-471.Chen, M. A. and B. D. KocarDevelopment of a novel microfluidic device to study metal geochemistry in situ using X-ray fluorescence microprobe spectroscopyJournal of Synchrotron Radiation28, 461-47110.1107/S1600577520016239
2021Chen, P., Y. Li, Y. Nishiyama, S. V. Pingali, H. M. O'Neill, Q. Zhang and L. A. Berglund. Small Angle Neutron Scattering Shows Nanoscale PMMA Distribution in Transparent Wood Biocomposites. Nano Letters 21(7), 2883-2890.Chen, P., Y. Li, Y. Nishiyama, S. V. Pingali, H. M. O'Neill, Q. Zhang and L. A. BerglundSmall Angle Neutron Scattering Shows Nanoscale PMMA Distribution in Transparent Wood BiocompositesNano Letters21(7), 2883-289010.1021/acs.nanolett.0c05038
2021Cogan DP, Zhang K, Li X, Li S, Pintilie GD, Roh SH, Craik CS, Chiu W, Khosla C. 2021. "Mapping the catalytic conformations of an assembly-line polyketide synthase module." Science. 374(6568):729-34.SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1126/science.abi8358
2021Corless, E. I., S. M. S. Imran, M. B. Watkins, J. P. Bacik, J. R. Mattice, A. Patterson, K. Danyal, M. Soffe, R. Kitelinger, L. C. Seefeldt, S. Origanti, B. Bennett, B. Bothner, N. Ando and E. Antony. The flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP binding. Journal of Biological Chemistry 296.Corless, E. I., S. M. S. Imran, M. B. Watkins, J. P. Bacik, J. R. Mattice, A. Patterson, K. Danyal, M. Soffe, R. Kitelinger, L. C. Seefeldt, S. Origanti, B. Bennett, B. Bothner, N. Ando and E. AntonyThe flexible N-terminus of BchL autoinhibits activity through interaction with its [4Fe-4S] cluster and released upon ATP bindingJournal of Biological Chemistry29610.1074/jbc.RA120.016278
2021Dewey, C., J. R. Bargar and S. Fendorf. Porewater Lead Concentrations Limited by Particulate Organic Matter Coupled with Ephemeral Iron(III), and Sulfide Phases during Redox Cycles within Contaminated Floodplain Soils. Environmental Science & Technology 55(9), 5878-5886.Dewey, C., J. R. Bargar and S. FendorfPorewater Lead Concentrations Limited by Particulate Organic Matter Coupled with Ephemeral Iron(III), and Sulfide Phases during Redox Cycles within Contaminated Floodplain SoilsEnvironmental Science & Technology55(9), 5878-588610.1021/acs.est.0c08162
2021Drayman, Nir, et al. "Masitinib is a broad coronavirus 3CL inhibitor that blocks replication of SARS-CoV-2," Science 373, 931-936 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1126/science.abg5827(related highlight) (feature story)
2021do Nascimento, C. W. A., D. Hesterberg and R. Tappero. Imaging Zn and Ni distributions in leaves of different ages of the hyperaccumulator Noccaea caerulescens by synchrotron-based X-ray fluorescence. Journal of Hazardous Materials 408.do Nascimento, C. W. A., D. Hesterberg and R. TapperoImaging Zn and Ni distributions in leaves of different ages of the hyperaccumulator Noccaea caerulescens by synchrotron-based X-ray fluorescenceJournal of Hazardous Materials40810.1016/j.jhazmat.2020.124813
2021Ericksen, J., Li, F., Stroud, R.M., and Edwards, R.H. 2021. "Allosteric Inhibition of a Vesicular Glutamate Transporter by an Isoform-Specific Antibody." Biochemistry 60, 32, 2463-2470SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1021/acs.biochem.1c00375
2021Eckert, P., Johs, A., Semrau, J.D., DiSpirito, A.A., Richardson, J., Sarangi, R., Herndon, E., Gu, B., Pierce, E.M. "Spectroscopic and computational investigations of organometallic complexation of group 12 transition metals by methanobactins from Methylocystis sp. SB2." 2021. Journal of Inorganic Biochemistry.SSRLStructural Molecular Biology Resource X-Ray Absorption and Emission Spectroscopy (XAS, XES)10.1016/j.jinorgbio.2021.111496(related highlight)
2021Fernández-Lucas, Jesús, et al. "Biochemical and structural studies of two tetrameric nucleoside 2′-deoxyribosyltransferases from psychrophilic and mesophilic bacteria: Insights into cold-adaptation," Int. J. Biol.Macromol. 192, 138-150 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1016/j.ijbiomac.2021.09.164
2021Gao, A., N. Vasilyev, A. Kaushik, W. Duan and A. Serganov. Principles of RNA and nucleotide discrimination by the RNA processing enzyme RppH. Nucleic Acids Research 48(7), 3776-3788.Gao, A., N. Vasilyev, A. Kaushik, W. Duan and A. SerganovPrinciples of RNA and nucleotide discrimination by the RNA processing enzyme RppHNucleic Acids Research48(7), 3776-378810.1093/NAR/GKAA024
2021Gonzalez, A., T. Mannen, T. Çağatay, A. Fujiwara, H. Matsumura, A. B. Niesman, C. A. Brautigam, Y. M. Chook and T. Yoshizawa. Mechanism of karyopherin-β2 binding and nuclear import of ALS variants FUS(P525L), and FUS(R495X). Scientific Reports 11(1).Gonzalez, A., T. Mannen, T. Çağatay, A. Fujiwara, H. Matsumura, A. B. Niesman, C. A. Brautigam, Y. M. Chook and T. YoshizawaMechanism of karyopherin-β2 binding and nuclear import of ALS variants FUS(P525L), and FUS(R495X), Scientific Reports11(1), 10.1038/s41598-021-83196-y
2021Guo, R., J. Sumner and S. Qian. Structure of Diisobutylene Maleic Acid Copolymer (DIBMA), and Its Lipid Particle as a "stealth" Membrane-Mimetic for Membrane Protein Research. ACS Applied Bio Materials 4(6), 4760–4768.Guo, R., J. Sumner and S. QianStructure of Diisobutylene Maleic Acid Copolymer (DIBMA), and Its Lipid Particle as a "stealth" Membrane-Mimetic for Membrane Protein ResearchACS Applied Bio Materials4, 6, 4760–476810.1021/acsabm.0c01626
2021Guthmiller, Jenna J., et al. "SARS-CoV-2 Infection Severity Is Linked to Superior Humoral Immunity against the Spike," mBio 12 (1), e02940 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1128/mBio.02940-20
2021Harris, J.A., Faust, B., Gondin, A.B., Damgen, M.A., Suomivuori, C-M., Veldhuis, N.A., Cheng, Y., Dror, R.O., Thal, D.M., Manglik, A.. 2021. "Selective G protein signaling driven by substance P-neurokinin receptor dynamics." Nat. Chem. Biol. 18: 109-15.SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1038/s41589-021-00890-8
2021Hayes, D. G., D. B. Anunciado, R. Ye, R. N. D. Williams, H. M. O'Neill, S. V. Pingali and V. S. Urban. Incorporation of Membrane Proteins Into Bicontinuous Microemulsions Through Winsor-III System-Based Extraction. Journal of Surfactants and Detergents 24: 649-660.Hayes, D. G., D. B. Anunciado, R. Ye, R. N. D. Williams, H. M. O'Neill, S. V. Pingali and V. S. UrbanIncorporation of Membrane Proteins Into Bicontinuous Microemulsions Through Winsor-III System-Based ExtractionJournal of Surfactants and Detergents24: 649-66010.1002/jsde.12500
2021He Y, Wang Y, Liu B, Helmling C, Susac L, Cheng R, Hong Zhou Z, Feigon J. 2021. "Structures of telomerase at several steps of telomere repeat synthesis." Nature 593: 454-59.SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1038/s41586-021-03529-9
2021Hodge, Curtis D., et al. "Rigid monoclonal antibodies improve detection of SARS-CoV-2 nucleocapsid protein," MABS-Austin 13 (1), 1905978 (2021). DOI:APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1080/19420862.2021.1905978
2021Hsia, Y., R. Mout, W. Sheffler, N. I. Edman, I. Vulovic, Y. J. Park, R. L. Redler, M. J. Bick, A. K. Bera, A. Courbet, A. Kang, T. J. Brunette, U. Nattermann, E. Tsai, A. Saleem, C. M. Chow, D. Ekiert, G. Bhabha, D. Veesler and D. Baker. Design of multi-scale protein complexes by hierarchical building block fusion. Nature Communications 12(1).Hsia, Y., R. Mout, W. Sheffler, N. I. Edman, I. Vulovic, Y. J. Park, R. L. Redler, M. J. Bick, A. K. Bera, A. Courbet, A. Kang, T. J. Brunette, U. Nattermann, E. Tsai, A. Saleem, C. M. Chow, D. Ekiert, G. Bhabha, D. Veesler and D. BakerDesign of multi-scale protein complexes by hierarchical building block fusionNature Communications12(1), 10.1038/s41467-021-22276-z
2021Jung, H. and S. Lee. Insights into the mismatch discrimination mechanism of Y-family DNA polymerase Dpo4. Biochemical Journal 478(9), 1769-1781.Jung, H. and S. LeeInsights into the mismatch discrimination mechanism of Y-family DNA polymerase Dpo4Biochemical Journal478(9), 1769-178110.1042/BCJ20210162
2021Kim, Youngchang, et al. "Tipiracil binds to uridine site and inhibits Nsp15 endoribonuclease NendoU from SARS-CoV-2," Commun. Biol. 4, 193 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Tipiracil binds to uridine site and inhibits Nsp15 endoribonuclease NendoU from SARS-CoV-210.1038/s42003-021-01735-9
2021Klein, T. A., D. W. Grebenc, S. Y. Gandhi, V. S. Shah, Y. Kim and J. C. Whitney. Structure of the extracellular region of the bacterial type VIIb secretion system subunit EsaA. Structure 29(2), 177-185.e6.Klein, T. A., D. W. Grebenc, S. Y. Gandhi, V. S. Shah, Y. Kim and J. C. WhitneyStructure of the extracellular region of the bacterial type VIIb secretion system subunit EsaAStructure29(2), 177-185.e610.1016/j.str.2020.11.002
2021Klykov, O., Gangwar, S.P., Yelshanskaya, M.V., Yen, L., Sobolevsky, A.I. 2021. "Structure and desensitization of AMPA receptor complexes with type II TARP γ5 and GSG1L." Mol. Cell. 81(23):4771-4783.SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1016/j.molcel.2021.09.030
2021Kroll, T., M. L. Baker, S. A. Wilson, M. Lundberg, A. Juhin, M. A. Arrio, J. J. Yan, L. B. Gee, A. Braun, T. C. Weng, D. Sokaras, B. Hedman, K. O. Hodgson and E. I. Solomon. Effect of 3d/4p Mixing on 1s2p Resonant Inelastic X-ray Scattering: Electronic Structure of Oxo-Bridged Iron Dimers. Journal of the American Chemical Society 143(12), 4569-4584.Kroll, T., M. L. Baker, S. A. Wilson, M. Lundberg, A. Juhin, M. A. Arrio, J. J. Yan, L. B. Gee, A. Braun, T. C. Weng, D. Sokaras, B. Hedman, K. O. Hodgson and E. I. SolomonEffect of 3d/4p Mixing on 1s2p Resonant Inelastic X-ray Scattering: Electronic Structure of Oxo-Bridged Iron DimersJournal of the American Chemical Society143(12), 4569-458410.1021/jacs.0c11193
2021Lakhanpal, S., J. S. Fan, S. Luan and K. Swaminathan. Structural and functional analyses of the PPIase domain of Arabidopsis thaliana CYP71 reveal its catalytic activity toward histone H3. FEBS Letters 595(1), 145-154.Lakhanpal, S., J. S. Fan, S. Luan and K. SwaminathanStructural and functional analyses of the PPIase domain of Arabidopsis thaliana CYP71 reveal its catalytic activity toward histone H3FEBS Letters595(1), 145-15410.1002/1873-3468.13965
2021Lapenta, F., Aupič, J., Vezzoli, M., et al. 2021. "Self-assembly and regulation of protein cages from pre-organised coiled-coil modules." Nat Commun 12, 939.ALSStructurally Integrated Biology for the Life Sciences Solution X-Ray Scattering (SAXS)10.1038/s41467-021-21184-6(related highlight)
2021Lemak, Sofia, et al.  "Structural and biochemical insights into CRISPR RNA processing by the Cas5c ribonuclease SMU1763 from Streptococcus mutans," J. Biol. Chem. 297 (5), 101251 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1016/j.jbc.2021.101251
2021Li, B., X. Deng, S. H. Kim, L. Buhrow, D. R. Tomchick, M. A. Phillips and A. J. Michael. Alternative pathways utilize or circumvent putrescine for biosynthesis of putrescine-containing rhizoferrin. Journal of Biological Chemistry 296.Li, B., X. Deng, S. H. Kim, L. Buhrow, D. R. Tomchick, M. A. Phillips and A. J. MichaelAlternative pathways utilize or circumvent putrescine for biosynthesis of putrescine-containing rhizoferrinJournal of Biological Chemistry29610.1074/jbc.RA120.016738
2021Limmer, M. A., A. E. Evans and A. L. Seyfferth. A New Method to Capture the Spatial and Temporal Heterogeneity of A quatic Plant Iron Root Plaque in Situ. Environmental Science & Technology 55(2), 912-918.Limmer, M. A., A. E. Evans and A. L. SeyfferthA New Method to Capture the Spatial and Temporal Heterogeneity of A quatic Plant Iron Root Plaque in SituEnvironmental Science & Technology55(2), 912-91810.1021/acs.est.0c02949
2021Luo, S., B. G. Coutinho, P. Dadhwal, Y. Oda, J. Ren, A. L. Schaefer, E. Peter Greenberg, C. S. Harwood and L. Tong. Structural basis for a bacterial Pip system plant effector recognition protein. Proceedings of the National Academy of Sciences of the United States of America 118(10).Luo, S., B. G. Coutinho, P. Dadhwal, Y. Oda, J. Ren, A. L. Schaefer, E. Peter Greenberg, C. S. Harwood and L. TongStructural basis for a bacterial Pip system plant effector recognition proteinProceedings of the National Academy of Sciences of the United States of America118(10), 10.1073/pnas.2019462118
2021Michalska, Karolina, et al. "Catalytically impaired TrpA subunit of tryptophan synthase from Chlamydia trachomatis is an allosteric regulator of TrpB," Protein Sci. 30 (9), 1904-1918 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Catalytically impaired TrpA subunit of tryptophan synthase from Chlamydia trachomatis is an allosteric regulator of TrpB10.1002/pro.4143
2021Michalska, Karolina, et al. "Mycobacterium tuberculosis Phe-tRNA synthetase: structural insights into tRNA recognition and aminoacylation," Nucleic Acids Res. 49 (9), 5351-5368 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Mycobacterium tuberculosis Phe-tRNA synthetase: structural insights into tRNA recognition and aminoacylation10.1093/nar/gkab272(related highlight) (feature story)
2021Michalska, Karolina and Joachimiak, Andrzej. "Structural genomics and the Protein Data Bank," J. Biol. Chem. 296, 100747 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Structural genomics and the Protein Data Bank10.1016/j.jbc.2021.100747
2021Miller, K. R., S. Biswas, A. Jasniewski, A. H. Follmer, A. Biswas, T. Albert, S. Sabuncu, E. L. Bominaar, M. P. Hendrich, P. Moënne-Loccoz and A. S. Borovik. Artificial Metalloproteins with Dinuclear Iron-Hydroxido Centers. Journal of the American Chemical Society 143(5), 2384-2393.Miller, K. R., S. Biswas, A. Jasniewski, A. H. Follmer, A. Biswas, T. Albert, S. Sabuncu, E. L. Bominaar, M. P. Hendrich, P. Moënne-Loccoz and A. S. BorovikArtificial Metalloproteins with Dinuclear Iron-Hydroxido CentersJournal of the American Chemical Society143(5), 2384-239310.1021/jacs.0c12564
2021Modi, Gyan, et al. "The Enzymatic Activity of Inosine 5′-Monophosphate Dehydrogenase May Not Be a Vulnerable Target for Staphylococcus aureus Infections," ACS Infect. Dis. 7 (11), 3062-3076 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1021/acsinfecdis.1c00342
2021Neuberger, A., Nadezhdin, K.D., Sobolevsky, A.I. 2021. "Structural mechanisms of TRPV6 inhibition by ruthenium red and econazole." Nat. Commun. 12(1):6284.SSRLStanford-SLAC Cryo-EM CenterCryo-electron Microscopy and Tomography10.1038/s41467-021-26608-x
2021Mrugała, B., A. Miłaczewska, P. J. Porebski, E. Niedzialkowska, M. Guzik, W. Minor and T. Borowski. A study on the structure, mechanism, and biochemistry of kanamycin B dioxygenase (KanJ), —an enzyme with a broad range of substrates. FEBS Journal 288(4), 1366-1386.DOI: 10.1111/febs.15462Mrugała, B., A. Miłaczewska, P. J. Porebski, E. Niedzialkowska, M. Guzik, W. Minor and T. BorowskiA study on the structure, mechanism, and biochemistry of kanamycin B dioxygenase (KanJ), —an enzyme with a broad range of substratesFEBS Journal288(4), 1366-138610.1111/febs.15462
2021Olmeda, I., P. Casino, R. E. Collins, R. Sendra, S. Callejón, J. Huesa, A. S. Soares, S. Ferrer and I. Pardo. Structural analysis and biochemical properties of laccase enzymes from two Pediococcus species. Microbial Biotechnology 14(3), 1026-1043.Olmeda, I., P. Casino, R. E. Collins, R. Sendra, S. Callejón, J. Huesa, A. S. Soares, S. Ferrer and I. PardoStructural analysis and biochemical properties of laccase enzymes from two Pediococcus speciesMicrobial Biotechnology14(3), 1026-104310.1111/1751-7915.13751
2021Osipiuk, Jerzy, et al. "Structure of papain-like protease from SARS-CoV-2 and its complexes with non-covalent inhibitors," Nat. Commun12, 743 (2021).APSStructural Biology Center X-ray Macromolecular Crystallography (MX)10.1038/s41467-021-21060-3(related highlight) (feature story)
2021Patwardhan, A. et al. 2021 "Nickel–Sulfonate Mode of Substrate Binding for Forward and Reverse Reactions of Methyl-SCoM Reductase Suggest a Radical Mechanism Involving Long-Range Electron Transfer," J. Am. Chem. Soc. 2021 143 (14), 5481-5496.SSRLStructural Molecular Biology Resource X-Ray Absorption and Emission Spectroscopy (XAS, XES), X-Ray Fluorescence Imaging (XRF)10.1021/jacs.1c01086(related highlight)
2021Powell, A.E., Zhang, K., Sanya, M., Tang, S., Weidenbacher, P.A., Li, S., Pham, T.D., Pak, J.E., Chiu, W., Kim, P.S. 2021. "A Single Immunization with Spike-Functionalized Ferritin Vaccines Elicits Neutralizing Antibody Responses against SARS-CoV-2 in Mice." ACS Cent Sci. 7(1):183-99.SSRLStanford-SLAC Cryo-EM CenterCryo-EM10.1021/acscentsci.0c01405
2021Rasbury, E. Troy, Theodore M. Present, Paul Northrup, Ryan V. Tappero, Antonio Lanzirotti, Jennifer M. Cole, Kathleen M. Wooton and Kevin Hatton. Tools for uranium characterization in carbonate samples: case studies of natural U–Pb geochronology reference materials. Geochronology 3(1), 103-122.Rasbury, E. Troy, Theodore M. Present, Paul Northrup, Ryan V. Tappero, Antonio Lanzirotti, Jennifer M. Cole, Kathleen M. Wooton and Kevin HattonTools for uranium characterization in carbonate samples: case studies of natural U–Pb geochronology reference materialsGeochronology3(1), 103-12210.5194/gchron-3-103-2021
2021Raven, M. R., R. G. Keil and S. M. Webb. Microbial sulfate reduction and organic sulfur formation in sinking marine particles. Science 371(6525), 178-181.Raven, M. R., R. G. Keil and S. M. WebbMicrobial sulfate reduction and organic sulfur formation in sinking marine particlesScience371(6525), 178-18110.1126/science.abc6035
2021Reinhard, M. E., M. W. Mara, T. Kroll, H. Lim, R. G. Hadt, R. Alonso-Mori, M. Chollet, J. M. Glownia, S. Nelson, D. Sokaras, K. Kunnus, T. B. Driel, R. W. Hartsock, K. S. Kjaer, C. Weninger, E. Biasin, L. B. Gee, K. O. Hodgson, B. Hedman, U. Bergmann, E. I. Solomon and K. J. Gaffney. Short-lived metal-centered excited state initiates iron-methionine photodissociation in ferrous cytochrome c. Nature Communications 12(1).Reinhard, M. E., M. W. Mara, T. Kroll, H. Lim, R. G. Hadt, R. Alonso-Mori, M. Chollet, J. M. Glownia, S. Nelson, D. Sokaras, K. Kunnus, T. B. Driel, R. W. Hartsock, K. S. Kjaer, C. Weninger, E. Biasin, L. B. Gee, K. O. Hodgson, B. Hedman, U. Bergmann, E. I. Solomon and K. J. GaffneyShort-lived metal-centered excited state initiates iron-methionine photodissociation in ferrous cytochrome cNature Communications12(1), 10.1038/s41467-021-21423-w
2021Roy, R. N., K. Hendriks, W. Kopec, S. Abdolvand, K. L. Weiss, B. L. De Groot, A. Lange, H. Sun and L. Coates. Structural plasticity of the selectivity filter in a nonselective ion channel. IUCrJ 8, 421-430.Roy, R. N., K. Hendriks, W. Kopec, S. Abdolvand, K. L. Weiss, B. L. De Groot, A. Lange, H. Sun and L. CoatesStructural plasticity of the selectivity filter in a nonselective ion channelIUCrJ8(), 421-43010.1107/S205225252100213X
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2020Khan, Z.M., Real, A. M., Marsiglia, W. M., Chow, A., Duffy, M. E., Yerabolu, J. R., Scopton, A. P., Dar, A. C. "Structural basis for the action of the drug trametinib at KSR-bound MEK."588, 509–514(2020).APS, NSLSIIX-ray Macromolecular Crystallography (MX)Khan, Z.M., Real, A. M., Marsiglia, W. M., Chow, A., Duffy, M. E., Yerabolu, J. R., Scopton, A. P., Dar, A. C.Structural basis for the action of the drug trametinib at KSR-bound MEKNature588, 509–51410.1038/s41586-020-2760-4(feature story) (related highlight)
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2020Ledray, A. P., C. M. Krest, T. H. Yosca, K. Mittra and M. T. Green. Ascorbate Peroxidase Compound II Is an Iron(IV), Oxo Species. Journal of the American Chemical Society 142(48), 20419-20425.Ledray, A. P., C. M. Krest, T. H. Yosca, K. Mittra and M. T. GreenAscorbate Peroxidase Compound II Is an Iron(IV), Oxo SpeciesJournal of the American Chemical Society142(48), 20419-2042510.1021/jacs.0c09108
2020Lee, H. B., D. A. Marchiori, R. Chatterjee, P. H. Oyala, J. Yano, R. D. Britt and T. Agapie. S = 3 Ground State for a Tetranuclear MnIV4O4 Complex Mimicking the S3 State of the Oxygen-Evolving Complex. Journal of the American Chemical Society 142(8), 3753-3761.Lee, H. B., D. A. Marchiori, R. Chatterjee, P. H. Oyala, J. Yano, R. D. Britt and T. AgapieS = 3 Ground State for a Tetranuclear MnIV4O4 Complex Mimicking the S3 State of the Oxygen-Evolving ComplexJournal of the American Chemical Society142(8), 3753-376110.1021/jacs.9b10371
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2020Matzen, S., S. Fakra, P. Nico and C. Pallud. Pteris vittata arsenic accumulation only partially explains soil arsenic depletion during field‐scale phytoextraction. Soil Systems 4(4), 44217.Matzen, S., S. Fakra, P. Nico and C. PalludPteris vittata arsenic accumulation only partially explains soil arsenic depletion during field‐scale phytoextractionSoil Systems4(4), 4421710.3390/soilsystems4040071
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2019Blank, P. N., S. A. Shinsky and D. W. Christianson. Structure of Sesquisabinene Synthase 1, a Terpenoid Cyclase That Generates a Strained [3.1.0] Bridged-Bicyclic Product. ACS Chemical Biology 14(5), 1011-1019.Blank, P. N., S. A. Shinsky and D. W. ChristiansonStructure of Sesquisabinene Synthase 1, a Terpenoid Cyclase That Generates a Strained [3.1.0] Bridged-Bicyclic ProductACS Chemical Biology14(5), 1011-101910.1021/acschembio.9b00218
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2019Boeynaems, S., A. S. Holehouse, V. Weinhardt, D. Kovacs, J. Van Lindt, C. Larabell, L. V. D. Bosch, R. Das, P. S. Tompa, R. V. Pappu and A. D. Gitler. Spontaneous driving forces give rise to protein−RNA condensates with coexisting phases and complex material properties. Proceedings of the National Academy of Sciences of the United States of America 116(16), 7889-7898.Boeynaems, S., A. S. Holehouse, V. Weinhardt, D. Kovacs, J. Van Lindt, C. Larabell, L. V. D. Bosch, R. Das, P. S. Tompa, R. V. Pappu and A. D. GitlerSpontaneous driving forces give rise to protein−RNA condensates with coexisting phases and complex material propertiesProceedings of the National Academy of Sciences of the United States of America116(16), 7889-789810.1073/pnas.1821038116
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2019Bouxsein, N. F., C. Leal, C. S. McAllister, Y. Li, K. K. Ewert, C. E. Samuel and C. R. Safinya. 3D Columnar Phase of Stacked Short DNA Organized by Coherent Membrane Undulations. Langmuir 35(36), 11891-11901.Bouxsein, N. F., C. Leal, C. S. McAllister, Y. Li, K. K. Ewert, C. E. Samuel and C. R. Safinya3D Columnar Phase of Stacked Short DNA Organized by Coherent Membrane UndulationsLangmuir35(36), 11891-1190110.1021/acs.langmuir.9b01726
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2019Branscum, K. M., S. K. Menon, C. A. Foster and A. H. West. Insights revealed by the co-crystal structure of the Saccharomyces cerevisiae histidine phosphotransfer protein Ypd1 and the receiver domain of its downstream response regulator Ssk1. Protein Science 28(12), 2099-2111.Branscum, K. M., S. K. Menon, C. A. Foster and A. H. WestInsights revealed by the co-crystal structure of the Saccharomyces cerevisiae histidine phosphotransfer protein Ypd1 and the receiver domain of its downstream response regulator Ssk1Protein Science28(12), 2099-211110.1002/pro.3755
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2019Burda-Grabowska, M., K. Macegoniuk, R. Flick, B. P. Nocek, A. Joachimiak, A. F. Yakunin, A. Mucha and Ł Berlicki. Bisphosphonic acids and related compounds as inhibitors of nucleotide- and polyphosphate-processing enzymes: A PPK1 and PPK2 case study. Chemical Biology and Drug Design 93(6), 1197-1206.Burda-Grabowska, M., K. Macegoniuk, R. Flick, B. P. Nocek, A. Joachimiak, A. F. Yakunin, A. Mucha and Ł BerlickiBisphosphonic acids and related compounds as inhibitors of nucleotide- and polyphosphate-processing enzymes: A PPK1 and PPK2 case studyChemical Biology and Drug Design93(6), 1197-120610.1111/cbdd.13439
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2019Chen, Z., S. E. Boyken, M. Jia, F. Busch, D. Flores-Solis, M. J. Bick, P. Lu, Z. L. VanAernum, A. Sahasrabuddhe, R. A. Langan, S. Bermeo, T. J. Brunette, V. K. Mulligan, L. P. Carter, F. DiMaio, N. G. Sgourakis, V. H. Wysocki and D. Baker. Programmable design of orthogonal protein heterodimers. Nature 565(7737), 106-111.Chen, Z., S. E. Boyken, M. Jia, F. Busch, D. Flores-Solis, M. J. Bick, P. Lu, Z. L. VanAernum, A. Sahasrabuddhe, R. A. Langan, S. Bermeo, T. J. Brunette, V. K. Mulligan, L. P. Carter, F. DiMaio, N. G. Sgourakis, V. H. Wysocki and D. BakerProgrammable design of orthogonal protein heterodimersNature565(7737), 106-11110.1038/s41586-018-0802-y
2019Choy, M.S., T. M. Moon, R. Ravindran, J. A. Bray, L. C. Robinson, T. L. Archuleta, W. Shi, W. Peti, K. Tatchell, R. Page. “SDS22 selectively recognizes and traps metal-deficient inactive PP1.” PNAS 116 (41) 20472-20481 (2019).NSLSII, SSRLX-ray Macromolecular Crystallography (MX)Choy, M.S., T.M. Moon, R. Ravindran, J. A. Bray, L. C. Robinson, T. L. Archuleta, W. Shi, W. Peti, K. Tatchell, R. Page.SDS22 selectively recognizes and traps metal-deficient inactive PP1PNAS 116 (41) 20472-2048110.1073/pnas.1908718116(feature story) (related highlight)
2019Chundawat, S. P. S., L. D. Sousa, S. Roy, Z. Yang, S. Gupta, R. Pal, C. Zhao, S.-H. Liu, L. Petridis, H. O'Neill, and S. V. Pingali. Ammonia-salt solvent promotes cellulosic biomass deconstruction under ambient pretreatment conditions to enable rapid soluble sugar production at ultra-low enzyme loadings. Green Chemistry  22(1) 204—218.SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Chundawat, S. P. S., L. D. Sousa, S. Roy, Z. Yang, S. Gupta, R. Pal, C. Zhao, S.-H. Liu, L. Petridis, H. O'Neill, and S. V. PingaliAmmonia-salt solvent promotes cellulosic biomass deconstruction under ambient pretreatment conditions to enable rapid soluble sugar production at ultra-low enzyme loadingsGreen Chemistry22(1) 204—21810.1039/C9GC03524A(related highlight) (feature story)
2019Dantas, J. M., P. C. Portela, A. P. Fernandes, Y. Y. Londer, X. Yang, N. E. C. Duke, M. Schiffer, P. R. Pokkuluri and C. A. Salgueiro. Structural and Functional Relevance of the Conserved Residue V13 in the Triheme Cytochrome PpcA from Geobacter sulfurreducens. Journal of Physical Chemistry B 123(14), 3050-3060.Dantas, J. M., P. C. Portela, A. P. Fernandes, Y. Y. Londer, X. Yang, N. E. C. Duke, M. Schiffer, P. R. Pokkuluri and C. A. SalgueiroStructural and Functional Relevance of the Conserved Residue V13 in the Triheme Cytochrome PpcA from Geobacter sulfurreducensJournal of Physical Chemistry B123(14), 3050-306010.1021/acs.jpcb.9b01214
2019Dasgupta, M., D. Budday, S. H. P. de Oliveira, P. Madzelan, D. Marchany-Rivera, J. Seravalli, B. Hayes, R. G. Sierra, S. Boutet, M. S. Hunter, R. Alonso-Mori, A. Batyuk, J. Wierman, A. Lyubimov, A. S. Brewster, N. K. Sauter, G. A. Applegate, V. K. Tiwari, D. B. Berkowitz, M. C. Thompson, A. E. Cohen, J. S. Fraser, M. E. Wall, H. van den Bedem and M. A. Wilson. Mix-and-inject XFEL crystallography reveals gated conformational dynamics during enzyme catalysis. Proceedings of the National Academy of Sciences of the United States of America 116(51), 25634-25640.Dasgupta, M., D. Budday, S. H. P. de Oliveira, P. Madzelan, D. Marchany-Rivera, J. Seravalli, B. Hayes, R. G. Sierra, S. Boutet, M. S. Hunter, R. Alonso-Mori, A. Batyuk, J. Wierman, A. Lyubimov, A. S. Brewster, N. K. Sauter, G. A. Applegate, V. K. Tiwari, D. B. Berkowitz, M. C. Thompson, A. E. Cohen, J. S. Fraser, M. E. Wall, H. van den Bedem and M. A. WilsonMix-and-inject XFEL crystallography reveals gated conformational dynamics during enzyme catalysisProceedings of the National Academy of Sciences of the United States of America116(51), 25634-2564010.1073/pnas.1901864116
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2019DeMirci, H., Y. Rao, G. M. Stoffel, B. Vögeli,, K. Schell, A. Batyuk, C. Gati, R. G. Sierra, M. S. Hunter, E. Han Dao, H. I. Ciftci, B. Hayes, F. Poitevin, K. Tono, D. A. Saez,  E. Vöhringer-Martinez, S. Deutsch, Y. Yoshikuni, T. J. Erb, and S. Wakatsuki. Coupled inter-subunit dynamics enable the fastest CO2-fixation by reductive carboxylases. bioRxiv preprint. SSRLStructural Molecular Biology Resource X-ray Macromolecular Crystallography (MX)DeMirci, H., Y. Rao, G. M. Stoffel, B. Vögeli, K. Schell, A. Batyuk, C. Gati, R. G. Sierra, M. S. Hunter, E. Han Dao, H. I. Ciftci, B. Hayes, F. Poitevin, K. Tono, D. A. Saez, E. Vöhringer-Martinez, S. Deutsch, Y. Yoshikuni, T. J. Erb, and S. WakatsukiCoupled inter-subunit dynamics enable the fastest CO2-fixation by reductive carboxylasesbioRxiv preprint10.1101/607101(related highlight)
2019Dergunov, S. A., A. G. Richter, M. D. Kim, S. V. Pingali, V. S. Urban and E. Pinkhassik. Deciphering and Controlling Structural and Functional Parameters of the Shells in Vesicle-Templated Polymer Nanocapsules. Langmuir 35(40), 13020-13030.Dergunov, S. A., A. G. Richter, M. D. Kim, S. V. Pingali, V. S. Urban and E. PinkhassikDeciphering and Controlling Structural and Functional Parameters of the Shells in Vesicle-Templated Polymer NanocapsulesLangmuir35(40), 13020-1303010.1021/acs.langmuir.9b01495
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2019Du, X., O. A. Volkov, R. M. Czerwinski, H. Tan, C. Huerta, E. R. Morton, J. P. Rizzi, P. M. Wehn, R. Xu, D. Nijhawan and E. M. Wallace. Structural basis and kinetic pathway of RBM39 recruitment to DCAF15 by a Sulfonamide Molecular Glue E7820. Structure 27(11), 1625-1633.e3.Du, X., O. A. Volkov, R. M. Czerwinski, H. Tan, C. Huerta, E. R. Morton, J. P. Rizzi, P. M. Wehn, R. Xu, D. Nijhawan and E. M. WallaceStructural basis and kinetic pathway of RBM39 recruitment to DCAF15 by a Sulfonamide Molecular Glue E7820Structure27(11), 1625-1633.e310.1016/j.str.2019.10.005
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2019Endapally, S., D. Frias, M. Grzemska, A. Gay, D. R. Tomchick, and A. Radhakrishnan. Molecular discrimination between two conformations of sphingomyelin in plasma membranes. Cell 176(5), 1040-1053.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Endapally, S., D. Frias, M. Grzemska, A. Gay, D. R. Tomchick, and A. RadhakrishnanMolecular discrimination between two conformations of sphingomyelin in plasma membranesCell176(5), 1040-105310.1016/j.cell.2018.12.042(feature story) (related highlight)
2019Evans, B. R., M. Foston, H. M. O’Neill, D. Reeves, C. Rempe, K. McGrath, A. J. Ragauskas and B. H. Davison. Production of deuterated biomass by cultivation of Lemna minor (duckweed), in D2O. Planta 249(5), 1465-1475.Evans, B. R., M. Foston, H. M. O’Neill, D. Reeves, C. Rempe, K. McGrath, A. J. Ragauskas and B. H. DavisonProduction of deuterated biomass by cultivation of Lemna minor (duckweed), in D2OPlanta249(5), 1465-147510.1007/s00425-019-03097-3
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2019Fang, X., J. Osipiuk, S. Chakravarthy, M. Yuan, W. M. Menzer, D. Nissen, P. Liang, D. A. Raba, K. Tuz, A. J. Howard, A. Joachimiak, D. D. L. Minh and O. Juarez. Conserved residue His-257 of Vibrio cholerae flavin transferase ApbE plays a critical role in substrate binding and catalysis. Journal of Biological Chemistry 294(37), 13800-13810.Fang, X., J. Osipiuk, S. Chakravarthy, M. Yuan, W. M. Menzer, D. Nissen, P. Liang, D. A. Raba, K. Tuz, A. J. Howard, A. Joachimiak, D. D. L. Minh and O. JuarezConserved residue His-257 of Vibrio cholerae flavin transferase ApbE plays a critical role in substrate binding and catalysisJournal of Biological Chemistry294(37), 13800-1381010.1074/jbc.RA119.008261
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2019Guo, G., M. Xu, Y. Chang, T. Luyten, B. Seitaj, W. Liu, P. Zhu, G. Bultynck, L. Shi, M. Quick and Q. Liu. Ion and pH Sensitivity of a TMBIM Ca2+ Channel. Structure 27(6), 1013-1021.e3.Guo, G., M. Xu, Y. Chang, T. Luyten, B. Seitaj, W. Liu, P. Zhu, G. Bultynck, L. Shi, M. Quick and Q. LiuIon and pH Sensitivity of a TMBIM Ca2+ ChannelStructure27(6), 1013-1021.e310.1016/j.str.2019.03.003
2019Guo, G., P. Zhu, M. R. Fuchs, W. Shi, B. Andi, Y. Gao, W. A. Hendrickson, S. McSweeney, and Q. Li. Synchrotron microcrystal native-SAD phasing at a low energy. IUCrJ 6(4), 532-542.NSLSIICenter for BioMolecular Structure X-ray Macromolecular Crystallography (MX)Guo, G., P. Zhu, M. R. Fuchs, W. Shi, B. Andi, Y. Gao, W. A. Hendrickson, S. McSweeney, and Q. LiSynchrotron microcrystal native-SAD phasing at a low energyIUCrJ6(4) 532-54210.1107/S2052252519004536(feature story)
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2019Ha, Y., H. Hu, K. Higgins, M. Maroney, B. Hedman, K. Hodgson and E. Solomon. The Electronic Structure of the Metal Active Site Determines the Geometric Structure and Function of the Metalloregulator NikR. Biochemistry 58(34), 3585-3591.Ha, Y., H. Hu, K. Higgins, M. Maroney, B. Hedman, K. Hodgson and E. SolomonThe Electronic Structure of the Metal Active Site Determines the Geometric Structure and Function of the Metalloregulator NikRBiochemistry58(34), 3585-359110.1021/acs.biochem.9b00542
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2019Hogancamp, T. N., S. A. Cory, D. P. Barondeau and F. M. Raushel. Structure and Chemical Reaction Mechanism of LigU, an Enzyme That Catalyzes an Allylic Isomerization in the Bacterial Degradation of Lignin. Biochemistry 58(33), 3494-3503.Hogancamp, T. N., S. A. Cory, D. P. Barondeau and F. M. RaushelStructure and Chemical Reaction Mechanism of LigU, an Enzyme That Catalyzes an Allylic Isomerization in the Bacterial Degradation of LigninBiochemistry58(33), 3494-350310.1021/acs.biochem.9b00549
2019Hoshika, S., N. A. Leal, M. J. Kim, M. S. Kim, N. B. Karalkar, H. J. Kim, A. M. Bates, N. E. Watkins, H. A. SantaLucia, A. J. Meyer, S. DasGupta, J. A. Piccirilli, A. D. Ellington, J. SantaLucia, M. M. Georgiadis and S. A. Benner. Hachimoji DNA and RNA: A genetic system with eight building blocks. Science 363(6429), 884-887.Hoshika, S., N. A. Leal, M. J. Kim, M. S. Kim, N. B. Karalkar, H. J. Kim, A. M. Bates, N. E. Watkins, H. A. SantaLucia, A. J. Meyer, S. DasGupta, J. A. Piccirilli, A. D. Ellington, J. SantaLucia, M. M. Georgiadis and S. A. BennerHachimoji DNA and RNA: A genetic system with eight building blocksScience363(6429), 884-88710.1126/science.aat0971
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2019Miller, M. S., S. Maheshwari, W. Shi, Y. Gao, N. Chu, A. S. Soares, P. A. Cole, L. Mario Amzel, M. R. Fuchs, J. Jakoncic and S. B. Gabelli. Getting the most out of your crystals: Data collection at the new high-flux, Microfocus MX beamlines at NSLS-II. Molecules 24(3).Miller, M. S., S. Maheshwari, W. Shi, Y. Gao, N. Chu, A. S. Soares, P. A. Cole, L. Mario Amzel, M. R. Fuchs, J. Jakoncic and S. B. GabelliGetting the most out of your crystals: Data collection at the new high-flux, Microfocus MX beamlines at NSLS-IIMolecules24(3), 10.3390/molecules24030496
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2019Rittle, J., M. J. Field, M. T. Green, and F. A. Tezcan.  An efficient, step-economical strategy for the design of functional metalloproteins. Nature Chemistry 11, 434-441.SSRLStructural Molecular Biology Resource X-ray Macromolecular Crystallography (MX)Rittle, J., M. J. Field, M. T. Green, and F. A. TezcanAn efficient, step-economical strategy for the design of functional metalloproteinsNature Chemistry11, 434-44110.1038/s41557-019-0218-9(related highlight)
2019Roose, B. W. and D. W. Christianson. Structural Basis of Tryptophan Reverse N-Prenylation Catalyzed by CymD. Biochemistry 58(30), 3232-3242.Roose, B. W. and D. W. ChristiansonStructural Basis of Tryptophan Reverse N-Prenylation Catalyzed by CymDBiochemistry58(30), 3232-324210.1021/acs.biochem.9b00399
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2019Shrestha, U. R., P. Juneja, Q. Zhang, V. Gurumoorthy, J. M. Borreguero, V. Urban, X. Cheng, S. V. Pingali, J. C. Smith, H. M. O’Neill and L. Petridis. Generation of the configurational ensemble of an intrinsically disordered protein from unbiased molecular dynamics simulation. Proceedings of the National Academy of Sciences of the United States of America 116(41), 20446-20452.Shrestha, U. R., P. Juneja, Q. Zhang, V. Gurumoorthy, J. M. Borreguero, V. Urban, X. Cheng, S. V. Pingali, J. C. Smith, H. M. O’Neill and L. PetridisGeneration of the configurational ensemble of an intrinsically disordered protein from unbiased molecular dynamics simulationProceedings of the National Academy of Sciences of the United States of America116(41), 20446-2045210.1073/pnas.1907251116
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2019Sierra, R. G., A. Batyuk, Z. Sun, A. Aquila, M. S. Hunter, T. J. Lane, M. Liang, C. H. Yoon, R. Alonso-Mori, R. Armenta, J. C. Castagna, M. Hollenbeck, T. O. Osier, M. Hayes, J. Aldrich, R. Curtis, J. E. Koglin, T. Rendahl, E. Rodriguez, S. Carbajo, S. Guillet, R. Paul, P. Hart, K. Nakahara, G. Carini, H. Demirci, E. H. Dao, B. M. Hayes, Y. P. Rao, M. Chollet, Y. Feng, F. D. Fuller, C. Kupitz, T. Sato, M. H. Seaberg, S. Song, T. B. Van Driel, H. Yavas, D. Zhu, A. E. Cohen, S. Wakatsuki and S. Boutet. The macromolecular femtosecond crystallography instrument at the linac coherent light source. Journal of Synchrotron Radiation 26(2), 346-357.Sierra, R. G., A. Batyuk, Z. Sun, A. Aquila, M. S. Hunter, T. J. Lane, M. Liang, C. H. Yoon, R. Alonso-Mori, R. Armenta, J. C. Castagna, M. Hollenbeck, T. O. Osier, M. Hayes, J. Aldrich, R. Curtis, J. E. Koglin, T. Rendahl, E. Rodriguez, S. Carbajo, S. Guillet, R. Paul, P. Hart, K. Nakahara, G. Carini, H. Demirci, E. H. Dao, B. M. Hayes, Y. P. Rao, M. Chollet, Y. Feng, F. D. Fuller, C. Kupitz, T. Sato, M. H. Seaberg, S. Song, T. B. Van Driel, H. Yavas, D. Zhu, A. E. Cohen, S. Wakatsuki and S. BoutetThe macromolecular femtosecond crystallography instrument at the linac coherent light sourceJournal of Synchrotron Radiation26(2), 346-35710.1107/S1600577519001577
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2018Keable, S. M., O. A. Zadvornyy, L. E. Johnson, B. Ginovska, A. J. Rasmussen, K. Danyal, B. J. Eilers, G. A. Prussia, A. X. LeVan, S. Raugei, L. C. Seefeldt and J. W. Peters. Structural characterization of the P1 intermediate state of the P-cluster of nitrogenase. Journal of Biological Chemistry 293(25), 9629-9635.Keable, S. M., O. A. Zadvornyy, L. E. Johnson, B. Ginovska, A. J. Rasmussen, K. Danyal, B. J. Eilers, G. A. Prussia, A. X. LeVan, S. Raugei, L. C. Seefeldt and J. W. PetersStructural characterization of the P1 intermediate state of the P-cluster of nitrogenaseJournal of Biological Chemistry293(25), 9629-963510.1074/jbc.RA118.002435
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2018Panigrahi, R., T. Matsui, A. H. Song, K. M. P. Caldo, H. S. Young, R. J. Weselake and M. J. Lemieux. Intrinsic disorder in the regulatory N-terminal domain of diacylglycerol acyltransferase 1 from Brassica napus. Scientific Reports 8(1).Panigrahi, R., T. Matsui, A. H. Song, K. M. P. Caldo, H. S. Young, R. J. Weselake and M. J. LemieuxIntrinsic disorder in the regulatory N-terminal domain of diacylglycerol acyltransferase 1 from Brassica napusScientific Reports8(1), 10.1038/s41598-018-34339-1
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2017Viswanath, S., M. Bonomi, S. J. Kim, V. A. Klenchin, K. C. Taylor, K. C. Yabut, N. T. Umbreit, H. A. Van Epps, J. Meehl, M. H. Jones, D. Russel, J. A. Velazquez-Muriel, M. Winey, I. Rayment, T. N. Davis, A. Sali and E. G. Muller. The molecular architecture of the yeast spindle pole body core determined by Bayesian integrative modeling. Molecular Biology of the Cell 28(23), 3298-3314.Viswanath, S., M. Bonomi, S. J. Kim, V. A. Klenchin, K. C. Taylor, K. C. Yabut, N. T. Umbreit, H. A. Van Epps, J. Meehl, M. H. Jones, D. Russel, J. A. Velazquez-Muriel, M. Winey, I. Rayment, T. N. Davis, A. Sali and E. G. MullerThe molecular architecture of the yeast spindle pole body core determined by Bayesian integrative modelingMolecular Biology of the Cell28(23), 3298-331410.1091/mbc.E17-06-0397
2017Vogtt, K., G. Beaucage, M. Weaver and H. Jiang. Thermodynamic stability of worm-like micelle solutions. Soft Matter 13(36), 6068-6078.Vogtt, K., G. Beaucage, M. Weaver and H. JiangThermodynamic stability of worm-like micelle solutionsSoft Matter13(36), 6068-607810.1039/c7sm01132f
2017Warelow, T. P., M. J. Pushie, J. J. H. Cotelesage, J. M. Santini and G. N. George. The active site structure and catalytic mechanism of arsenite oxidase. Scientific Reports 7(1).Warelow, T. P., M. J. Pushie, J. J. H. Cotelesage, J. M. Santini and G. N. GeorgeThe active site structure and catalytic mechanism of arsenite oxidaseScientific Reports7(1)10.1038/s41598-017-01840-y
2017Warren, C., T. Matsui, J.M. Karp, T. Onikubo, S. Cahill, M. Brenowitz, D. Cowburn, M. Girvin, and D. Shechter. Dynamic intramolecular regulation of the histone chaperone nucleoplasmin controls histone binding and release. Nature Communications 8(1) 2215.SSRLStructural Molecular Biology ResourceSolution X-ray Scattering (SAXS)Warren, C., T. Matsui, J.M. Karp, T. Onikubo, S. Cahill, M. Brenowitz, D. Cowburn, M. Girvin, and D. ShechterDynamic intramolecular regulation of the histone chaperone nucleoplasmin controls histone binding and releaseNature Communications8(1) 221510.1038/s41467-017-02308-3(related highlight)
2017Wetterhorn, K. M., K. Gabardi, H. Michlmayr, A. Malachova, M. Busman, S. P. McCormick, F. Berthiller, G. Adam and I. Rayment. Determinants and Expansion of Specificity in a Trichothecene UDP-Glucosyltransferase from Oryza sativa. Biochemistry 56(50), 6585-6596.Wetterhorn, K. M., K. Gabardi, H. Michlmayr, A. Malachova, M. Busman, S. P. McCormick, F. Berthiller, G. Adam and I. RaymentDeterminants and Expansion of Specificity in a Trichothecene UDP-Glucosyltransferase from Oryza sativaBiochemistry56(50), 6585-659610.1021/acs.biochem.7b01007
2017Wright, A.V., J.J. Liu, G.J. Knott, K.W. Doxzen, E. Nogales, and J.A. Doudna. Structures of the CRISPR genome integration complex. Science 357(6356) 1113-1118.ALS, SSRLStructurally Integrated Biology for the Life Sciences, Structural Molecular Biology ResourceX-ray Macromolecular Crystallography (MX)Wright, A.V., J.J. Liu, G.J. Knott, K.W. Doxzen, E. Nogales, and J.A. DoudnaStructures of the CRISPR genome integration complexScience357(6356) 1113-111810.1126/science.aao0679(feature story) (related highlight)
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2017Wu, R., R. Wilton, M. E. Cuff, M. Endres, G. Babnigg, J. N. Edirisinghe, C. S. Henry, A. Joachimiak, M. Schiffer and P. R. Pokkuluri. A novel signal transduction protein: Combination of solute binding and tandem PAS-like sensor domains in one polypeptide chain. Protein Science 26(4), 857-869.Wu, R., R. Wilton, M. E. Cuff, M. Endres, G. Babnigg, J. N. Edirisinghe, C. S. Henry, A. Joachimiak, M. Schiffer and P. R. PokkuluriA novel signal transduction protein: Combination of solute binding and tandem PAS-like sensor domains in one polypeptide chainProtein Science26(4), 857-86910.1002/pro.3134
2017Xiao, X., H. Yang, V. Arutiunian, Y. Fang, G. Besse, C. Morimoto, B. Zirkle, and X.S. Chen. Structural determinants of APOBEC3B non-catalytic domain for molecular assembly and catalytic regulation. Nucleic Acids Research 45(12) 7494-7506ALS, APSStructural Biology Center, Structurally Integrated Biology for the Life SciencesX-ray Macromolecular Crystallography (MX)Xiao, X., H. Yang, V. Arutiunian, Y. Fang, G. Besse, C. Morimoto, B. Zirkle, and X.S. ChenStructural determinants of APOBEC3B non-catalytic domain for molecular assembly and catalytic regulationNucleic Acids Research45(12) 7494-750610.1093/nar/gkx362
2017Xiong, Y., F. Li, N. Babault, A. Dong, H. Zeng, H. Wu, X. Chen, C. H. Arrowsmith, P. J. Brown, J. Liu, M. Vedadi and J. Jin. Discovery of Potent and Selective Inhibitors for G9a-Like Protein (GLP), Lysine Methyltransferase. Journal of Medicinal Chemistry 60(5), 1876-1891.Xiong, Y., F. Li, N. Babault, A. Dong, H. Zeng, H. Wu, X. Chen, C. H. Arrowsmith, P. J. Brown, J. Liu, M. Vedadi and J. JinDiscovery of Potent and Selective Inhibitors for G9a-Like Protein (GLP), Lysine MethyltransferaseJournal of Medicinal Chemistry60(5), 1876-189110.1021/acs.jmedchem.6b01645
2017Xiong, Y., J. Lu, J. Hunter, L. Li, D. Scott, H. G. Choi, S. M. Lim, A. Manandhar, S. Gondi, T. Sim, K. D. Westover and N. S. Gray. Covalent guanosine mimetic inhibitors of G12C KRAS. ACS Medicinal Chemistry Letters 8(1), 61-66.Xiong, Y., J. Lu, J. Hunter, L. Li, D. Scott, H. G. Choi, S. M. Lim, A. Manandhar, S. Gondi, T. Sim, K. D. Westover and N. S. GrayCovalent guanosine mimetic inhibitors of G12C KRASACS Medicinal Chemistry Letters8(1), 61-6610.1021/acsmedchemlett.6b00373
2017Yin, Z., M. Machius, E.J. Nestler, and G. Rudenko. Activator Protein-1 redox switch controlling structure and DNA-binding. Nucleic Acids Research 45(19) 11425-11436 .APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Yin, Z., M. Machius, E.J. Nestler, and G. RudenkoActivator Protein-1 redox switch controlling structure and DNA-bindingNucleic Acids Research45(19) 11425-1143610.1093/nar/gkx795
2017Zhao, S., Y. Li, D. Liu, J. Liu, Y. M. Liu, D. N. Zakharov, Q. Wu, A. Orlov, A. A. Gewirth, E. A. Stach, R. G. Nuzzo and A. I. Frenkel. Multimodal Study of the Speciations and Activities of Supported Pd Catalysts During the Hydrogenation of Ethylene. Journal of Physical Chemistry C 121(34), 18962-18972.Zhao, S., Y. Li, D. Liu, J. Liu, Y. M. Liu, D. N. Zakharov, Q. Wu, A. Orlov, A. A. Gewirth, E. A. Stach, R. G. Nuzzo and A. I. FrenkelMultimodal Study of the Speciations and Activities of Supported Pd Catalysts During the Hydrogenation of EthyleneJournal of Physical Chemistry C121(34), 18962-1897210.1021/acs.jpcc.7b06270
2017Zhou, A., J. Prakash, G. T. Rohde, J. E. M. N. Klein, S. T. Kleespies, A. Draksharapu, R. Fan, Y. Guo, C. J. Cramer and L. Que. The Two Faces of Tetramethylcyclam in Iron Chemistry: Distinct Fe-O-M Complexes Derived from [FeIV(Oanti/syn), (TMC), ]2+ Isomers. Inorganic Chemistry 56(1), 518-527.Zhou, A., J. Prakash, G. T. Rohde, J. E. M. N. Klein, S. T. Kleespies, A. Draksharapu, R. Fan, Y. Guo, C. J. Cramer and L. QueThe Two Faces of Tetramethylcyclam in Iron Chemistry: Distinct Fe-O-M Complexes Derived from [FeIV(Oanti/syn), (TMC), ]2+ IsomersInorganic Chemistry56(1), 518-52710.1021/acs.inorgchem.6b02417
2016Brummett, A. E. and M. Dey. New mechanistic insight from substrate- and product-bound structures of the metal-dependent dimethylsulfoniopropionate lyase DddQ. Biochemistry 55(44), , 6162-6174.Brummett, A. E. and M. DeyNew mechanistic insight from substrate- and product-bound structures of the metal-dependent dimethylsulfoniopropionate lyase DddQBiochemistry55(44), , 6162-617410.1021/acs.biochem.6b00585
2016Fallas, J.A., G. Ueda, W. Sheffler, V. Nguyen, D.E. McNamara, B. Sankaran, J.H. Pereira, F. Parmeggiani, T.J. Brunette, D. Cascio, T.R. Yeates, P. Zwart, and D. Baker. 2016. "Computational design of self-assembling cyclic protein homo-oligomers." Nat Chem 9(4)353-360.ALS, APSStructural Biology Center, Structurally Integrated Biology for the Life SciencesSolution X-ray Scattering (SAXS), Macromolecular Crystallography (MX)Fallas, J.A., G. Ueda, W. Sheffler, V. Nguyen, D.E. McNamara, B. Sankaran, J.H. Pereira, F. Parmeggiani, T.J. Brunette, D. Cascio, T.R. Yeates, P. Zwart, and D. BakerComputational design of self-assembling cyclic protein homo-oligomersNat Chem9(4)353-36010.1038/nchem.2673(related highlight)
2016Handing, K.B., I.G. Shabalin, O. Kassaar, S. Khazaipoul, C.A. Blindauer, A.J. Stewart, M. Chruszcz, and W. Minor. Circulatory zinc transport is controlled by distinct interdomain sites on mammalian albumins. Chem Sci 7(11) 6635-6648.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Handing, K.B., I.G. Shabalin, O. Kassaar, S. Khazaipoul, C.A. Blindauer, A.J. Stewart, M. Chruszcz, and W. MinorCirculatory zinc transport is controlled by distinct interdomain sites on mammalian albuminsChem Sci7(11)6635-664810.1039/c6sc02267g(feature story) (related highlight)
2016Kober, D.L., J.M. Alexander-Brett, C.M. Karch, C. Cruchaga, M. Colonna, M.J. Holtzman, and T.J. Brett. Neurodegenerative disease mutations in TREM2 reveal a functional surface and distinct loss-of-function mechanisms. Elife 5.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Kober, D.L., J.M. Alexander-Brett, C.M. Karch, C. Cruchaga, M. Colonna, M.J. Holtzman, and T.J. BrettNeurodegenerative disease mutations in TREM2 reveal a functional surface and distinct loss-of-function mechanismsElife510.7554/eLife.20391(feature story) (related highlight)
2016Lai, Y.T., G.L. Hura, K.N. Dyer, H.Y. Tang, J.A. Tainer, and T.O. Yeates. Designing and defining dynamic protein cage nanoassemblies in solution. Sci Adv 2(12) e1501855.ALSStructurally Integrated Biology for the Life SciencesSmall-Angle X-ray Scattering (SAXS)Lai, Y.T., G.L. Hura, K.N. Dyer, H.Y. Tang, J.A. Tainer, and T.O. YeatesDesigning and defining dynamic protein cage nanoassemblies in solutionSci Adv2(12)e150185510.1126/sciadv.1501855(feature story) (related highlight)
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2016McAndrew, R.P., N. Sathitsuksanoh, M.M. Mbughuni, R.A. Heins, J.H. Pereira, A. George, K.L. Sale, B.G. Fox, B.A. Simmons, and P.D. Adams. Structure and mechanism of NOV1, a resveratrol-cleaving dioxygenase. Proc Natl Acad Sci U S A 113(50) 14324-14329.ALSStructurally Integrated Biology for the Life Sciences X-ray Macromolecular Crystallography (MX)McAndrew, R.P., N. Sathitsuksanoh, M.M. Mbughuni, R.A. Heins, J.H. Pereira, A. George, K.L. Sale, B.G. Fox, B.A. Simmons, and P.D. AdamsStructure and mechanism of NOV1, a resveratrol-cleaving dioxygenaseProc Natl Acad Sci U S A113(50)14324-1432910.1073/pnas.1608917113(feature story) (related highlight)
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2016Stagno, J. R., Y. Liu, Y. R. Bhandari, C. E. Conrad, S. Panja, M. Swain, L. Fan, G. Nelson, C. Li, D. R. Wendel, T. A. White, J. D. Coe, M. O. Wiedorn, J. Knoska, D. Oberthuer, R. A. Tuckey, P. Yu, M. Dyba, S. G. Tarasov, U. Weierstall, T. D. Grant, C. D. Schwieters, J. Zhang, A. R. Ferré-D'Amaré, P. Fromme, D. E. Draper, M. Liang, M. S. Hunter, S. Boutet, K. Tan, X. Zuo, X. Ji, A. Barty, N. A. Zatsepin, H. N. Chapman, J. C. H. Spence, S. A. Woodson and Y. X. Wang. Structures of riboswitch RNA reaction states by mix-and-inject XFEL serial crystallography. Nature 541(7636), 242-246.Stagno, J. R., Y. Liu, Y. R. Bhandari, C. E. Conrad, S. Panja, M. Swain, L. Fan, G. Nelson, C. Li, D. R. Wendel, T. A. White, J. D. Coe, M. O. Wiedorn, J. Knoska, D. Oberthuer, R. A. Tuckey, P. Yu, M. Dyba, S. G. Tarasov, U. Weierstall, T. D. Grant, C. D. Schwieters, J. Zhang, A. R. Ferré-D'Amaré, P. Fromme, D. E. Draper, M. Liang, M. S. Hunter, S. Boutet, K. Tan, X. Zuo, X. Ji, A. Barty, N. A. Zatsepin, H. N. Chapman, J. C. H. Spence, S. A. Woodson and Y. X. WangStructures of riboswitch RNA reaction states by mix-and-inject XFEL serial crystallographyNature541(7636), 242-24610.1038/nature20599
2016Stingaciu, LR., O’Neill, H., Liberton, M. et al. "Revealing the Dynamics of Thylakoid Membranes in Living Cyanobacterial Cells." Sci Rep 6, 19627 (2016).SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Stingaciu, LR., O’Neill, H., Liberton, M. et al.Revealing the Dynamics of Thylakoid Membranes in Living Cyanobacterial CellsSci Rep6, 1962710.1038/srep19627(feature story) (related highlight)
2016Vandavasi, V.G., D.K. Putnam, Q. Zhang, L. Petridis, W.T. Heller, B.T. Nixon, C.H. Haigler, U. Kalluri, L. Coates, P. Langan, J.C. Smith, J. Meiler, and H. O'Neill. A Structural Study of CESA1 Catalytic Domain of Arabidopsis Cellulose Synthesis Complex Evidence for CESA Trimers. Plant Physiol 170(1) 123-135.SNS-HFIR, NSLSIISolution X-ray Scattering (SAXS), Small-Angle Neutron Scattering (SANS)Vandavasi, V.G., D.K. Putnam, Q. Zhang, L. Petridis, W.T. Heller, B.T. Nixon, C.H. Haigler, U. Kalluri, L. Coates, P. Langan, J.C. Smith, J. Meiler, and H. O'NeillA Structural Study of CESA1 Catalytic Domain of Arabidopsis Cellulose Synthesis Complex Evidence for CESA TrimersPlant Physiol170(1)123-13510.1104/pp.15.01356(related highlight)
2016Zhu, X., A.P. Hitchcock, D.A. Bazylinski, P. Denes, J. Joseph, U. Lins, S. Marchesini, H.W. Shiu, T. Tyliszczak, and D.A. Shapiro. Measuring spectroscopy and magnetism of extracted and intracellular magnetosomes using soft X-ray ptychography. Proc Natl Acad Sci U S A 113(51) E8219-E8227.ALSNational Center for X-Ray Tomography Soft X-ray TomographyZhu, X., A.P. Hitchcock, D.A. Bazylinski, P. Denes, J. Joseph, U. Lins, S. Marchesini, H.W. Shiu, T. Tyliszczak, and D.A. ShapiroMeasuring spectroscopy and magnetism of extracted and intracellular magnetosomes using soft X-ray ptychographyProc Natl Acad Sci U S A113(51)E8219-E822710.1073/pnas.1610260114(feature story) (related highlight)
2015

Nickels, J.D. et al. “Mechanical Properties of Nanoscopic Lipid Domains.” Journal of the American Chemical Society 137, 15772-15780 (2015).

SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Nickels, J.D. et al.Mechanical Properties of Nanoscopic Lipid DomainsJournal of the American Chemical Society137, 15772-1578010.1021/jacs.5b08894(related highlight)
2015Keiluweit, M., P. Nico, M.E. Harmon, J. Mao, J. Pett-Ridge, and M. Kleber. Long-term litter decomposition controlled by manganese redox cycling. Proc Natl Acad Sci U S A 112(38) E5253-5260.ALS, SSRLSynchrotron Infrared Hyperspectral Imaging, X-ray Absorption Spectroscopy (XAS), X-ray Fluorescence ImagingKeiluweit, M., P. Nico, M.E. Harmon, J. Mao, J. Pett-Ridge, and M. KleberLong-term litter decomposition controlled by manganese redox cyclingProc Natl Acad Sci U S A112(38)E5253-526010.1073/pnas.1508945112(feature story) (related highlight)
2015Kim, K.-W., et al. 2015. “Trimeric Structure of (+)-Pinoresinol-Forming Dirigent Protein at 1.95 Å Resolution with Three Isolated Active Sites,” Journal of Biological Chemistry 290, 1308–18.SSRLStructural Molecular Biology Resource X-ray Macromolecular Crystallography (MX)Kim, K.-W., et al.Trimeric Structure of (+)-Pinoresinol-Forming Dirigent Protein at 1.95 Å Resolution with Three Isolated Active SitesJournal of Biological Chemistry290, 1308–1810.1074/jbc.M114.611780(related highlight)
2015Luef, B., K. Frischkorn, K. Wrighton, et al. Diverse uncultivated ultra-small bacterial cells in groundwater. Nature Communications 6, 6372.ALSBerkeley Synchrotron Infrared Structural Biology Imaging ProgramInfrared (IR) ImagingLuef, B., K. Frischkorn, K. Wrighton, et alDiverse uncultivated ultra-small bacterial cells in groundwaterNature Communications6, 6372.10.1038/ncomms7372(feature story)
2015Michalska, K., A.D. Steen, G. Chhor, M. Endres, A.T. Webber, J. Bird, K.G. Lloyd, and A. Joachimiak. New aminopeptidase from 'microbial dark matter' archaeon. FASEB J 29(9) 4071-4079.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Michalska, K., A.D. Steen, G. Chhor, M. Endres, A.T. Webber, J. Bird, K.G. Lloyd, and A. JoachimiakNew aminopeptidase from 'microbial dark matter' archaeonFASEB J29(9)4071-407910.1096/fj.15-272906(feature story) (related highlight)
2015Nickels, J.D. et al. “Lateral organization, bilayer asymmetry, and inter-leaflet coupling of biological membranes.” Chemistry and Physics of Lipids 192, 87-99 (2015).SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Nickels, J.D. et al.Lateral organization, bilayer asymmetry, and inter-leaflet coupling of biological membranesChemistry and Physics of Lipids192, 87-99DOI:10.1371/10.1016/j.chemphyslip.2015.07.012(related highlight)
2015Sontz, P.A., J.B. Bailey, S. Ahn, and F.A. Tezcan. A Metal Organic Framework with Spherical Protein Nodes Rational Chemical Design of 3D Protein Crystals. J Am Chem Soc 137(36) 11598-11601.SSRLStructural Molecular Biology Resource X-ray Macromolecular Crystallography (MX)Sontz, P.A., J.B. Bailey, S. Ahn, and F.A. TezcanA Metal Organic Framework with Spherical Protein Nodes Rational Chemical Design of 3D Protein CrystalsJ Am Chem Soc137(36)11598-1160110.1021/jacs.5b07463(feature story) (related highlight)
2014Gross, E., X.-Z. Shu, S. Alayoglu, H A. Bechtel, et al. In situ IR and X-ray high spatial-resolution microspectroscopy measurements of multistep organic transformation in flow microreactor catalyzed by Au nanoclusters. J. Am. Chem. Soc. 136(9), 3624-3629.ALSBerkeley Synchrotron Infrared Structural Biology Imaging ProgramInfrared (IR) ImagingGross, E., X.-Z. Shu, S. Alayoglu, H A. Bechtel, et alIn situ IR and X-ray high spatial-resolution microspectroscopy measurements of multistep organic transformation in flow microreactor catalyzed by Au nanoclusters.J. Am. Chem. Soc.136(9), 3624-3629.10.1021/ja412740p(feature story)
2014Hans, A., E. Bechtel, A. Muller, L., Robert, et al. Ultrabroadband infrared nanospectroscopic imaging. PNAS 111(20), 7191-7196.ALSBerkeley Synchrotron Infrared Structural Biology Imaging ProgramInfrared (IR) ImagingHans, A., E. Bechtel, A. Muller, L., Robert, et alUltrabroadband infrared nanospectroscopic imagingPNAS111(20), 7191-7196.10.1073/pnas.1400502111(feature story)
2014Lai, Y.T., E. Reading, G.L. Hura, K.L. Tsai, A. Laganowsky, F.J. Asturias, J.A. Tainer, C.V. Robinson, and T.O. Yeates. Structure of a designed protein cage that self-assembles into a highly porous cube. Nat Chem 6(12)1065-1071.ALSStructurally Integrated Biology for the Life SciencesX-ray Macromolecular Crystallography (MX), Solution X-ray Scattering (SAXS)Lai, Y.T., E. Reading, G.L. Hura, K.L. Tsai, A. Laganowsky, F.J. Asturias, J.A. Tainer, C.V. Robinson, and T.O. YeatesStructure of a designed protein cage that self-assembles into a highly porous cubeNat Chem6(12)1065-107110.1038/nchem.2107(feature story) (related highlight)
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2013Chao, F.A., A. Morelli, J.C. Haugner, 3rd, L. Churchfield, L.N. Hagmann, L. Shi, L.R. Masterson, R. Sarangi, G. Veglia, and B. Seelig. Structure and dynamics of a primordial catalytic fold generated by in vitro evolution. Nat Chem Biol 9(2) 81-83.SSRLStructural Molecular Biology Resource X-ray Absorption and Emission Spectroscopy (XAS, XES)Chao, F.A., A. Morelli, J.C. Haugner, 3rd, L. Churchfield, L.N. Hagmann, L. Shi, L.R. Masterson, R. Sarangi, G. Veglia, and B. SeeligStructure and dynamics of a primordial catalytic fold generated by in vitro evolutionNat Chem Biol9(2)81-8310.1038/nchembio.1138(feature story) (related highlight)
2013Finfrock, Y. Z., Stern, E. A., Alkire, R. W., Kas, J. J., Evans-Lutterodt, K., Stein, A., Duke, N., Lazarski, K. & Joachimiak, A. "Mitigation of X-ray damage in macromolecular crystallography by submicrometre line focusing." (2013). Acta Cryst. D69, 1463-1469.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Finfrock, Y. Z., Stern, E. A., Alkire, R. W., Kas, J. J., Evans-Lutterodt, K., Stein, A., Duke, N., Lazarski, K. & Joachimiak, A.Mitigation of X-ray damage in macromolecular crystallography by submicrometre line focusingActa Crystallographica Section D STRUCTURAL BIOLOGY69, 1463-146910.1107/S0907444913009335(feature story) (related highlight)
2013Heberle, F.A., R.S. Petruzielo, J. Pan, P. Drazba, N. Kucerka, R.F. Standaert, G.W. Feigenson, and J. Katsaras. Bilayer thickness mismatch controls domain size in model membranes. J Am Chem Soc 135(18) 6853-6859.SNS-HFIRCenter for Structural Molecular Biology Solution X-ray Scattering (SAXS)Heberle, F.A., R.S. Petruzielo, J. Pan, P. Drazba, N. Kucerka, R.F. Standaert, G.W. Feigenson, and J. KatsarasBilayer thickness mismatch controls domain size in model membranesJ Am Chem Soc135(18)6853-685910.1021/ja3113615(related highlight)
2013Liberton M., Page L.E., O'Dell W.B., O'Neill H.M., Mamontov E., Urban V.S., Pakrasi H.B., "Organization and flexibility of cyanobacterial thylakoid membranes examined by neutron scattering", Journal of Biological Chemistry, 288, 3632-3640 (2013).SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Liberton M., Page L.E., O'Dell W.B., O'Neill H.M., Mamontov E., Urban V.S., Pakrasi H.B.Organization and flexibility of cyanobacterial thylakoid membranes examined by neutron scatteringJournal of Biological Chemistry288, 3632-364010.1074/jbc.M112.416933(feature story) (related highlight)
2013Liberton, M., Collins, A.M., Page, L.E. et al. "Probing the consequences of antenna modification in cyanobacteria." Photosynth Res 118, 17–24 (2013).SNS-HFIRCenter for Structural Molecular Biology Small-Angle Neutron Scattering (SANS)Liberton, M., Collins, A.M., Page, L.E. et al.Probing the consequences of antenna modification in cyanobacteriaPhotosynth Res118, 17–2410.1007/s11120-013-9940-0(feature story) (related highlight)
2013Michalska, K., K. Tan, H. Li, C. Hatzos-Skintges, J. Bearden, G. Babnigg, and A. Joachimiak. GH1-family 6-P-beta-glucosidases from human microbiome lactic acid bacteria. Acta Crystallogr D Biol Crystallogr 69(Pt 3) 451-463.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Michalska, K., K. Tan, H. Li, C. Hatzos-Skintges, J. Bearden, G. Babnigg, and A. JoachimiakGH1-family 6-P-beta-glucosidases from human microbiome lactic acid bacteriaActa Crystallogr D Biol Crystallogr69(Pt 3)451-46310.1107/S0907444912049608
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2012Chen, L., H.-Y. N. Holman, Z. Hao, H. A. Bechtel, et al. Synchrotron infrared measurements of protein phosphorylation in living single PC12 cells during neuronal differentiation. Analytical Chemistry 84(9), 4118-4125.ALSBerkeley Synchrotron Infrared Structural Biology Imaging ProgramInfrared (IR) ImagingChen, L., H.-Y. N. Holman, Z. Hao, H. A. Bechtel, et alSynchrotron infrared measurements of protein phosphorylation in living single PC12 cells during neuronal differentiationAnalytical Chemistry84(9), 4118-4125.10.1021/ac300308x(feature story)
2012Westfall, C.S., C. Zubieta, J. Herrmann, U. Kapp, M.H. Nanao, and J.M. Jez. Structural basis for prereceptor modulation of plant hormones by GH3 proteins. Science 336(6089) 1708-1711.APSStructural Biology Center X-ray Macromolecular Crystallography (MX)Westfall, C.S., C. Zubieta, J. Herrmann, U. Kapp, M.H. Nanao, and J.M. JezStructural basis for prereceptor modulation of plant hormones by GH3 proteinsScience336(6089)1708-171110.1126/science.1221863(related highlight)
2010Hazen, T. C., E. A. Dubinsky, T. Z. DeSantis, G. L. Andersen, et al. Deep-sea oil plume enriches indigenous oil-degrading bacteria. Science 330(6001), 204-208.ALSBerkeley Synchrotron Infrared Structural Biology Imaging ProgramInfrared (IR) ImagingHazen, T. C., E. A. Dubinsky, T. Z. DeSantis, G. L. Andersen, et alDeep-sea oil plume enriches indigenous oil-degrading bacteriaScience330(6001), 204-208.10.1126/science.1195979(feature story)
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