Publications

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Ye, Q., Kim, D. Hyun, Dereli, I., Rosenberg, S. C., Hagemann, G., Herzog, F., Tóth, A., Cleveland, D. W., and Corbett, K. D. (2017) The AAA+ ATPase TRIP13 remodels HORMA domains through N-terminal engagement and unfolding. EMBO J. 10.15252/embj.201797291
Li, Z., Wang, S., Nattermann, U., Bera, A. K., Borst, A. J., Yaman, M. Y., Bick, M. J., Yang, E. C., Sheffler, W., Lee, B., Seifert, S., Hura, G. L., Nguyen, H., Kang, A., Dalal, R., Lubner, J. M., Hsia, Y., Haddox, H., Courbet, A., Dowling, Q., Miranda, M., Favor, A., Etemadi, A., Edman, N. I., Yang, W., Weidle, C., Sankaran, B., Negahdari, B., Ross, M. B., Ginger, D. S., and Baker, D. (2023) Accurate computational design of three-dimensional protein crystals. Nat Mater. 10.1038/s41563-023-01683-1
Li, Z., Wang, S., Nattermann, U., Bera, A. K., Borst, A. J., Yaman, M. Y., Bick, M. J., Yang, E. C., Sheffler, W., Lee, B., Seifert, S., Hura, G. L., Nguyen, H., Kang, A., Dalal, R., Lubner, J. M., Hsia, Y., Haddox, H., Courbet, A., Dowling, Q., Miranda, M., Favor, A., Etemadi, A., Edman, N. I., Yang, W., Weidle, C., Sankaran, B., Negahdari, B., Ross, M. B., Ginger, D. S., and Baker, D. (2023) Accurate computational design of three-dimensional protein crystals. Nat Mater. 10.1038/s41563-023-01683-1
Li, Z., Wang, S., Nattermann, U., Bera, A. K., Borst, A. J., Yaman, M. Y., Bick, M. J., Yang, E. C., Sheffler, W., Lee, B., Seifert, S., Hura, G. L., Nguyen, H., Kang, A., Dalal, R., Lubner, J. M., Hsia, Y., Haddox, H., Courbet, A., Dowling, Q., Miranda, M., Favor, A., Etemadi, A., Edman, N. I., Yang, W., Weidle, C., Sankaran, B., Negahdari, B., Ross, M. B., Ginger, D. S., and Baker, D. (2023) Accurate computational design of three-dimensional protein crystals. Nat Mater. 10.1038/s41563-023-01683-1
King, N. P., Bale, J. B., Sheffler, W., McNamara, D. E., Gonen, S., Gonen, T., Yeates, T. O., and Baker, D. (2014) Accurate design of co-assembling multi-component protein nanomaterials. Nature. 510, 103-8
Bale, J. B., Gonen, S., Liu, Y., Sheffler, W., Ellis, D., Thomas, C., Cascio, D., Yeates, T. O., Gonen, T., King, N. P., and Baker, D. (2016) Accurate design of megadalton-scale two-component icosahedral protein complexes. Science. 353, 389-94
Henneberg, L. T., Singh, J., Duda, D. M., Baek, K., Yanishevski, D., Murray, P. J., Mann, M., Sidhu, S. S., and Schulman, B. A. (2023) Activity-based profiling of cullin-RING E3 networks by conformation-specific probes. Nat Chem Biol. 19, 1513-1523
Wang, E. S., Verano, A. L., Nowak, R. P., J Yuan, C., Donovan, K. A., Eleuteri, N. A., Yue, H., Ngo, K. H., Lizotte, P. H., Gokhale, P. C., Gray, N. S., and Fischer, E. S. (2021) Acute pharmacological degradation of Helios destabilizes regulatory T cells. Nat Chem Biol. 17, 711-717
Wang, E. S., Verano, A. L., Nowak, R. P., J Yuan, C., Donovan, K. A., Eleuteri, N. A., Yue, H., Ngo, K. H., Lizotte, P. H., Gokhale, P. C., Gray, N. S., and Fischer, E. S. (2021) Acute pharmacological degradation of Helios destabilizes regulatory T cells. Nat Chem Biol. 17, 711-717
Stokes-Rees, I., Levesque, I., Murphy, F. V., Yang, W., Deacon, A., and Sliz, P. (2012) Adapting federated cyberinfrastructure for shared data collection facilities in structural biology. J Synchrotron Radiat. 19, 462-7
Sinha, S., Cheng, S., Sung, Y. Won, McNamara, D. E., Sawaya, M. R., Yeates, T. O., and Bobik, T. A. (2014) Alanine scanning mutagenesis identifies an asparagine-arginine-lysine triad essential to assembly of the shell of the Pdu microcompartment. J Mol Biol. 426, 2328-45
Yildiz, M., Ghosh, S., Bell, J. A., Sherman, W., and Hardy, J. A. (2013) Allosteric inhibition of the NS2B-NS3 protease from dengue virus. ACS Chem Biol. 8, 2744-52
Thompson, M. C., Cascio, D., Leibly, D. J., and Yeates, T. O. (2015) An allosteric model for control of pore opening by substrate binding in the EutL microcompartment shell protein. Protein Sci. 24, 956-75
Yang, M. Hee, Tran, T. H., Hunt, B., Agnor, R., Johnson, C. W., Shui, B., Waybright, T. J., Nowak, J. A., Stephen, A. G., Simanshu, D. K., and Haigis, K. M. (2023) Allosteric Regulation of Switch-II Domain Controls KRAS Oncogenicity. Cancer Res. 83, 3176-3183
Gannam, Z. T. K., Min, K., Shillingford, S. R., Zhang, L., Herrington, J., Abriola, L., Gareiss, P. C., Pantouris, G., Tzouvelekis, A., Kaminski, N., Zhang, X., Yu, J., Jamali, H., Ellman, J. A., Lolis, E., Anderson, K. S., and Bennett, A. M. (2020) An allosteric site on MKP5 reveals a strategy for small-molecule inhibition. Sci Signal. 10.1126/scisignal.aba3043
Oruganti, S., Zhang, Y., Li, H., Robinson, H., Terns, M. P., Terns, R. M., Yang, W., and Li, H. (2007) Alternative conformations of the archaeal Nop56/58-fibrillarin complex imply flexibility in box C/D RNPs. J Mol Biol. 371, 1141-50
Andorfer, M. C., Evans, D., Yang, S., He, C. Qixin, Girlich, A. M., Vergara-Coll, J., Sukumar, N., Houk, K. N., and Lewis, J. C. (2022) Analysis of Laboratory-Evolved Flavin-Dependent Halogenases Affords a Computational Model for Predicting Halogenase Site Selectivity. Chem Catal. 2, 2658-2674
Tsai, Y., Sawaya, M. R., and Yeates, T. O. (2009) Analysis of lattice-translocation disorder in the layered hexagonal structure of carboxysome shell protein CsoS1C. Acta Crystallogr D Biol Crystallogr. 65, 980-8
Bosnakovski, D., Toso, E. A., Ener, E. T., Gearhart, M. D., Yin, L., Lüttmann, F. F., Magli, A., Shi, K., Kim, J., Aihara, H., and Kyba, M. (2023) Antagonism among DUX family members evolved from an ancestral toxic single homeodomain protein. iScience. 26, 107823
J Y Wu, K., Tresco, B. I. C., Ramkissoon, A., Aleksandrova, E. V., Syroegin, E. A., N Y See, D., Liow, P., Dittemore, G. A., Yu, M., Testolin, G., Mitcheltree, M. J., Liu, R. Y., Svetlov, M. S., Polikanov, Y. S., and Myers, A. G. (2024) An antibiotic preorganized for ribosomal binding overcomes antimicrobial resistance. Science. 383, 721-726
Liu, L., Iketani, S., Guo, Y., Casner, R. G., Reddem, E. R., Nair, M. S., Yu, J., Chan, J. F. - W., Wang, M., Cerutti, G., Li, Z., Morano, N. C., Castagna, C. D., Corredor, L., Chu, H., Yuan, S., Poon, V. Kwok- Man, Chan, C. Chun- Sing, Chen, Z., Luo, Y., Cunningham, M., Chavez, A., Yin, M. T., Perlin, D. S., Tsuji, M., Yuen, K. - Y., Kwong, P. D., Sheng, Z., Huang, Y., Shapiro, L., and Ho, D. D. (2022) An antibody class with a common CDRH3 motif broadly neutralizes sarbecoviruses. Sci Transl Med. 10.1126/scitranslmed.abn6859
Liu, L., Iketani, S., Guo, Y., Casner, R. G., Reddem, E. R., Nair, M. S., Yu, J., Chan, J. F. - W., Wang, M., Cerutti, G., Li, Z., Morano, N. C., Castagna, C. D., Corredor, L., Chu, H., Yuan, S., Poon, V. Kwok- Man, Chan, C. Chun- Sing, Chen, Z., Luo, Y., Cunningham, M., Chavez, A., Yin, M. T., Perlin, D. S., Tsuji, M., Yuen, K. - Y., Kwong, P. D., Sheng, Z., Huang, Y., Shapiro, L., and Ho, D. D. (2022) An antibody class with a common CDRH3 motif broadly neutralizes sarbecoviruses. Sci Transl Med. 10.1126/scitranslmed.abn6859
Liu, L., Iketani, S., Guo, Y., Casner, R. G., Reddem, E. R., Nair, M. S., Yu, J., Chan, J. F. - W., Wang, M., Cerutti, G., Li, Z., Morano, N. C., Castagna, C. D., Corredor, L., Chu, H., Yuan, S., Poon, V. Kwok- Man, Chan, C. Chun- Sing, Chen, Z., Luo, Y., Cunningham, M., Chavez, A., Yin, M. T., Perlin, D. S., Tsuji, M., Yuen, K. - Y., Kwong, P. D., Sheng, Z., Huang, Y., Shapiro, L., and Ho, D. D. (2022) An antibody class with a common CDRH3 motif broadly neutralizes sarbecoviruses. Sci Transl Med. 10.1126/scitranslmed.abn6859
Liu, L., Iketani, S., Guo, Y., Casner, R. G., Reddem, E. R., Nair, M. S., Yu, J., Chan, J. F. - W., Wang, M., Cerutti, G., Li, Z., Morano, N. C., Castagna, C. D., Corredor, L., Chu, H., Yuan, S., Poon, V. Kwok- Man, Chan, C. Chun- Sing, Chen, Z., Luo, Y., Cunningham, M., Chavez, A., Yin, M. T., Perlin, D. S., Tsuji, M., Yuen, K. - Y., Kwong, P. D., Sheng, Z., Huang, Y., Shapiro, L., and Ho, D. D. (2022) An antibody class with a common CDRH3 motif broadly neutralizes sarbecoviruses. Sci Transl Med. 10.1126/scitranslmed.abn6859
Yin, Y., Romei, M. G., Sankar, K., Pal, L. R., Hoi, K. Hon, Yang, Y., Leonard, B., Boenig, G. De Leon, Kumar, N., Matsumoto, M., Payandeh, J., Harris, S. F., Moult, J., and Lazar, G. A. (2022) Antibody interfaces revealed through structural mining. Comput Struct Biotechnol J. 20, 4952-4968

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