Publications

Found 1231 results
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2021
Cui, H., Carlson, A. S., Schleiff, M. A., Divakaran, A., Johnson, J. A., Buchholz, C. R., Zahid, H., Vail, N. R., Shi, K., Aihara, H., Harki, D. A., Miller, G. P., Topczewski, J. J., and Pomerantz, W. C. K. (2021) 4-Methyl-1,2,3-Triazoles as -Acetyl-Lysine Mimics Afford Potent BET Bromodomain Inhibitors with Improved Selectivity. J Med Chem. 64, 10497-10511
Pan, C., Zimmer, A., Shah, M., Huynh, M. Sang, Lai, C. Chieh- Lin, Sit, B., Hooda, Y., Curran, D. M., and Moraes, T. F. (2021) Actinobacillus utilizes a binding-protein dependent ABC transporter to acquire the active form of Vitamin B. J Biol Chem. 10.1016/j.jbc.2021.101046
Pan, C., Zimmer, A., Shah, M., Huynh, M. Sang, Lai, C. Chieh- Lin, Sit, B., Hooda, Y., Curran, D. M., and Moraes, T. F. (2021) Actinobacillus utilizes a binding-protein dependent ABC transporter to acquire the active form of Vitamin B. J Biol Chem. 10.1016/j.jbc.2021.101046
Del Pino, G. L. Gonzalez, Li, K., Park, E., Schmoker, A. M., Ha, B. Hak, and Eck, M. J. (2021) Allosteric MEK inhibitors act on BRAF/MEK complexes to block MEK activation. Proc Natl Acad Sci U S A. 10.1073/pnas.2107207118
Ferrero, S., Flores, M. D., Short, C., Vazquez, C. A., Clark, L. E., Ziegenbein, J., Zink, S., Fuentes, D., Payes, C., Batto, M. V., Collazo, M., García, C. C., Abraham, J., Cordo, S. M., Rodriguez, J. A., and Helguera, G. (2021) Antibody-Based Inhibition of Pathogenic New World Hemorrhagic Fever Mammarenaviruses by Steric Occlusion of the Human Transferrin Receptor 1 Apical Domain. J Virol. 95, e0186820
Hudson, J. D., Tamilselvan, E., Sotomayor, M., and Cooper, S. R. (2021) A complete Protocadherin-19 ectodomain model for evaluating epilepsy-causing mutations and potential protein interaction sites. Structure. 29, 1128-1143.e4
Lei, H. - T., Mu, X., Hattne, J., and Gonen, T. (2021) A conformational change in the N terminus of SLC38A9 signals mTORC1 activation. Structure. 29, 426-432.e8
Wang, W., Liu, Q., Liu, Q., and Hendrickson, W. A. (2021) Conformational equilibria in allosteric control of Hsp70 chaperones. Mol Cell. 10.1016/j.molcel.2021.07.039
Adams, M. C., Schiltz, C. J., Heck, M. L., and Chappie, J. S. (2021) Crystal structure of the potato leafroll virus coat protein and implications for viral assembly. J Struct Biol. 214, 107811
Tal, N., Morehouse, B. R., Millman, A., Stokar-Avihail, A., Avraham, C., Fedorenko, T., Yirmiya, E., Herbst, E., Brandis, A., Mehlman, T., Oppenheimer-Shaanan, Y., Keszei, A. F. A., Shao, S., Amitai, G., Kranzusch, P. J., and Sorek, R. (2021) Cyclic CMP and cyclic UMP mediate bacterial immunity against phages. Cell. 184, 5728-5739.e16
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
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
Anishchenko, I., Pellock, S. J., Chidyausiku, T. M., Ramelot, T. A., Ovchinnikov, S., Hao, J., Bafna, K., Norn, C., Kang, A., Bera, A. K., DiMaio, F., Carter, L., Chow, C. M., Montelione, G. T., and Baker, D. (2021) De novo protein design by deep network hallucination. Nature. 10.1038/s41586-021-04184-w
Hymel, D., Tsuji, K., Grant, R. A., Chingle, R. M., Kunciw, D. L., Yaffe, M. B., and Burke, T. R. (2021) Design and synthesis of a new orthogonally protected glutamic acid analog and its use in the preparation of high affinity polo-like kinase 1 polo-box domain - binding peptide macrocycles. Org Biomol Chem. 19, 7843-7854
Wittlinger, F., Heppner, D. E., To, C., Günther, M., Shin, B. Hee, Rana, J. K., Schmoker, A. M., Beyett, T. S., Berger, L. M., Berger, B. - T., Bauer, N., Vasta, J. D., Corona, C. R., Robers, M. B., Knapp, S., Jänne, P. A., Eck, M. J., and Laufer, S. A. (2021) Design of a "Two-in-One" Mutant-Selective Epidermal Growth Factor Receptor Inhibitor That Spans the Orthosteric and Allosteric Sites. J Med Chem. 10.1021/acs.jmedchem.1c00848
Hsia, Y., Mout, R., Sheffler, W., Edman, N. I., Vulovic, I., Park, Y. - J., Redler, R. L., Bick, M. J., Bera, A. K., Courbet, A., Kang, A., Brunette, T. J., Nattermann, U., Tsai, E., Saleem, A., Chow, C. M., Ekiert, D., Bhabha, G., Veesler, D., and Baker, D. (2021) Design of multi-scale protein complexes by hierarchical building block fusion. Nat Commun. 12, 2294
Mélin, L., Abdullayev, S., Fnaiche, A., Vu, V., Suárez, N. González, Zeng, H., Szewczyk, M. M., Li, F., Senisterra, G., Allali-Hassani, A., Chau, I., Dong, A., Woo, S., Annabi, B., Halabelian, L., LaPlante, S. R., Vedadi, M., Barsyte-Lovejoy, D., Santhakumar, V., and Gagnon, A. (2021) Development of LM98, a Small-Molecule TEAD Inhibitor Derived from Flufenamic Acid. ChemMedChem. 16, 2982-3002
Hwang, T., Parker, S. S., Hill, S. M., Ilunga, M. W., Grant, R. A., Mouneimne, G., and Keating, A. E. (2021) A distributed residue network permits conformational binding specificity in a conserved family of actin remodelers. Elife. 10.7554/eLife.70601
Hwang, T., Parker, S. S., Hill, S. M., Ilunga, M. W., Grant, R. A., Mouneimne, G., and Keating, A. E. (2021) A distributed residue network permits conformational binding specificity in a conserved family of actin remodelers. Elife. 10.7554/eLife.70601
Sullivan, J. R., Lupien, A., Kalthoff, E., Hamela, C., Taylor, L., Munro, K. A., T Schmeing, M., Kremer, L., and Behr, M. A. (2021) Efficacy of epetraborole against Mycobacterium abscessus is increased with norvaline. PLoS Pathog. 17, e1009965
Xu, Y., Robev, D., Saha, N., Wang, B., Dalva, M. B., Xu, K., Himanen, J. P., and Nikolov, D. B. (2021) The Ephb2 Receptor Uses Homotypic, Head-to-Tail Interactions within Its Ectodomain as an Autoinhibitory Control Mechanism. Int J Mol Sci. 10.3390/ijms221910473
Williams, W. B., R Meyerhoff, R., Edwards, R. J., Li, H., Manne, K., Nicely, N. I., Henderson, R., Zhou, Y., Janowska, K., Mansouri, K., Gobeil, S., Evangelous, T., Hora, B., Berry, M., A Abuahmad, Y., Sprenz, J., Deyton, M., Stalls, V., Kopp, M., Hsu, A. L., Borgnia, M. J., Stewart-Jones, G. B. E., Lee, M. S., Bronkema, N., M Moody, A., Wiehe, K., Bradley, T., S Alam, M., Parks, R. J., Foulger, A., Oguin, T., Sempowski, G. D., Bonsignori, M., LaBranche, C. C., Montefiori, D. C., Seaman, M., Santra, S., Perfect, J., Francica, J. R., Lynn, G. M., Aussedat, B., Walkowicz, W. E., Laga, R., Kelsoe, G., Saunders, K. O., Fera, D., Kwong, P. D., Seder, R. A., Bartesaghi, A., Shaw, G. M., Acharya, P., and Haynes, B. F. (2021) Fab-dimerized glycan-reactive antibodies are a structural category of natural antibodies. Cell. 184, 2955-2972.e25

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