Publications

Found 2792 results
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Wang, J., Dye, B. T., Rajashankar, K. R., Kurinov, I., and Schulman, B. A. (2009) Insights into anaphase promoting complex TPR subdomain assembly from a CDC26-APC6 structure. Nat Struct Mol Biol. 16, 987-9
Wang, Z., Dang, H. V., Amaya, M., Xu, Y., Yin, R., Yan, L., Hickey, A. C., Annand, E. J., Horsburgh, B. A., Reid, P. A., Smith, I., Eden, J. - S., Xu, K., Broder, C. C., and Veesler, D. (2022) Potent monoclonal antibody-mediated neutralization of a divergent Hendra virus variant. Proc Natl Acad Sci U S A. 119, e2122769119
Wang, J., and Wing, R. A. (2014) Diamonds in the rough: a strong case for the inclusion of weak-intensity X-ray diffraction data. Acta Crystallogr D Biol Crystallogr. 70, 1491-7
Wang, L., Qiao, Q., Ferrao, R., Shen, C., Hatcher, J. M., Buhrlage, S. J., Gray, N. S., and Wu, H. (2017) Crystal structure of human IRAK1. Proc Natl Acad Sci U S A. 10.1073/pnas.1714386114
Wang, Q., Cheng, F., Lu, M., Tian, X., and Ma, J. (2008) Crystal structure of unliganded influenza B virus hemagglutinin. J Virol. 82, 3011-20
Wang, M., Xia, S., Blaha, G., Steitz, T. A., Konigsberg, W. H., and Wang, J. (2011) Insights into base selectivity from the 1.8 Å resolution structure of an RB69 DNA polymerase ternary complex.. Biochemistry. 50, 581-90
Wang, J. Yang John, Khmelinskaia, A., Sheffler, W., Miranda, M. C., Antanasijevic, A., Borst, A. J., Torres, S. V., Shu, C., Hsia, Y., Nattermann, U., Ellis, D., Walkey, C., Ahlrichs, M., Chan, S., Kang, A., Nguyen, H., Sydeman, C., Sankaran, B., Wu, M., Bera, A. K., Carter, L., Fiala, B., Murphy, M., Baker, D., Ward, A. B., and King, N. P. (2023) Improving the secretion of designed protein assemblies through negative design of cryptic transmembrane domains. Proc Natl Acad Sci U S A. 120, e2214556120
Wang, K. H., Román-Hernández, G., Grant, R. A., Sauer, R. T., and Baker, T. A. (2008) The molecular basis of N-end rule recognition. Mol Cell. 32, 406-14
Wang, H., Goehring, A., Wang, K. H., Penmatsa, A., Ressler, R., and Gouaux, E. (2013) Structural basis for action by diverse antidepressants on biogenic amine transporters. Nature. 503, 141-5
Wang, H., Elferich, J., and Gouaux, E. (2012) Structures of LeuT in bicelles define conformation and substrate binding in a membrane-like context. Nat Struct Mol Biol. 19, 212-9
Wan, Q., Ahmad, M. Faiz, Fairman, J., Gorzelle, B., de la Fuente, M., Dealwis, C., and Maguire, M. E. (2011) X-ray crystallography and isothermal titration calorimetry studies of the Salmonella zinc transporter ZntB. Structure. 19, 700-10
Wan, B., Wu, J., Meng, X., Lei, M., and Zhao, X. (2019) Molecular Basis for Control of Diverse Genome Stability Factors by the Multi-BRCT Scaffold Rtt107. Mol Cell. 75, 238-251.e5
Wan, L. C. K., Mao, D. Y. L., Neculai, D., Strecker, J., Chiovitti, D., Kurinov, I., Poda, G., Thevakumaran, N., Yuan, F., Szilard, R. K., Lissina, E., Nislow, C., Caudy, A. A., Durocher, D., and Sicheri, F. (2013) Reconstitution and characterization of eukaryotic N6-threonylcarbamoylation of tRNA using a minimal enzyme system. Nucleic Acids Res. 41, 6332-46
Wagner, J. M., Chan, S., Evans, T. J., Kahng, S., Kim, J., Arbing, M. A., Eisenberg, D., and Korotkov, K. V. (2016) Structures of EccB1 and EccD1 from the core complex of the mycobacterial ESX-1 type VII secretion system. BMC Struct Biol. 16, 5
Wagner, F. F., Bishop, J. A., Gale, J. P., Shi, X., Walk, M., Ketterman, J., Patnaik, D., Barker, D., Walpita, D., Campbell, A. J., Nguyen, S., Lewis, M., Ross, L., Weïwer, M., W An, F., Germain, A. R., Nag, P. P., Metkar, S., Kaya, T., Dandapani, S., Olson, D. E., Barbe, A. - L., Lazzaro, F., Sacher, J. R., Cheah, J. H., Fei, D., Perez, J., Munoz, B., Palmer, M., Stegmaier, K., Schreiber, S. L., Scolnick, E., Zhang, Y. - L., Haggarty, S. J., Holson, E. B., and Pan, J. Q. (2016) Inhibitors of Glycogen Synthase Kinase 3 with Exquisite Kinome-Wide Selectivity and Their Functional Effects. ACS Chem Biol. 11, 1952-63
Wada, M., Heux, L., Nishiyama, Y., and Langan, P. (2009) X-ray crystallographic, scanning microprobe X-ray diffraction, and cross-polarized/magic angle spinning 13C NMR studies of the structure of cellulose III(II). Biomacromolecules. 10, 302-9
Wachter, F., Nowak, R. P., Ficarro, S., Marto, J., and Fischer, E. S. (2024) Structural characterization of methylation-independent PP2A assembly guides alphafold2Multimer prediction of family-wide PP2A complexes. J Biol Chem. 300, 107268
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Vuksanovic, N., Clasman, J. R., Imperiali, B., and Allen, K. N. (2023) Specificity determinants revealed by the structure of glycosyltransferase Campylobacter concisus PglA. Protein Sci. 10.1002/pro.4848
Vorontsov, I. I., Minasov, G., Brunzelle, J. S., Shuvalova, L., Kiryukhina, O., Collart, F. R., and Anderson, W. F. (2007) Crystal structure of an apo form of Shigella flexneri ArsH protein with an NADPH-dependent FMN reductase activity. Protein Sci. 16, 2483-90
Voronkova, M. A., Hansen, H. L., Cooper, M. P., Miller, J., Sukumar, N., Geldenhuys, W. J., Robart, A. R., and Webb, B. A. (2023) Cancer-associated somatic mutations in human phosphofructokinase-1 reveal a critical electrostatic interaction for allosteric regulation of enzyme activity. Biochem J. 480, 1411-1427
Vorobieva, A. A., White, P., Liang, B., Horne, J. E., Bera, A. K., Chow, C. M., Gerben, S., Marx, S., Kang, A., Stiving, A. Q., Harvey, S. R., Marx, D. C., G Khan, N., Fleming, K. G., Wysocki, V. H., Brockwell, D. J., Tamm, L. K., Radford, S. E., and Baker, D. (2021) De novo design of transmembrane β barrels.. Science. 10.1126/science.abc8182
Voland, R. W., Coleman, R. E., and Lancaster, K. M. (2024) The structure of Mn(II)-bound Rubisco from Spinacia oleracea. J Inorg Biochem. 260, 112682
Vizcarra, C. L., Kreutz, B., Rodal, A. A., Toms, A. V., Lu, J., Zheng, W., Quinlan, M. E., and Eck, M. J. (2011) Structure and function of the interacting domains of Spire and Fmn-family formins. Proc Natl Acad Sci U S A. 108, 11884-9
Viswanathan, T., Arya, S., Chan, S. - H., Qi, S., Dai, N., Misra, A., Park, J. - G., Oladunni, F., Kovalskyy, D., Hromas, R. A., Martinez-Sobrido, L., and Gupta, Y. K. (2020) Structural basis of RNA cap modification by SARS-CoV-2. Nat Commun. 11, 3718
Viswanathan, T., Misra, A., Chan, S. - H., Qi, S., Dai, N., Arya, S., Martinez-Sobrido, L., and Gupta, Y. K. (2021) A metal ion orients SARS-CoV-2 mRNA to ensure accurate 2'-O methylation of its first nucleotide. Nat Commun. 12, 3287

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