Publications

Found 1535 results
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Journal Article
Brzezinski, K., Dauter, Z., Baj, A., Wałejko, P., and Witkowski, S. (2011) rac-6-Hy-droxy-2,5,7,8-tetra-methyl-chroman-2-carboxamide from synchrotron data. Acta Crystallogr Sect E Struct Rep Online. 67, o503-4
Brzezinski, K., Dauter, Z., Baj, A., Wałejko, P., and Witkowski, S. (2011) rac-6-Hy-droxy-2,5,7,8-tetra-methyl-chroman-2-carboxamide from synchrotron data. Acta Crystallogr Sect E Struct Rep Online. 67, o503-4
Dowling, D. P., Bruender, N. A., Young, A. P., McCarty, R. M., Bandarian, V., and Drennan, C. L. (2014) Radical SAM enzyme QueE defines a new minimal core fold and metal-dependent mechanism. Nat Chem Biol. 10, 106-12
Dowling, D. P., Bruender, N. A., Young, A. P., McCarty, R. M., Bandarian, V., and Drennan, C. L. (2014) Radical SAM enzyme QueE defines a new minimal core fold and metal-dependent mechanism. Nat Chem Biol. 10, 106-12
Blum, E., Zhang, J., Zaluski, J., Einstein, D. E., Korshin, E. E., Kubas, A., Gruzman, A., Tochtrop, G. P., Kiser, P. D., and Palczewski, K. (2021) Rational Alteration of Pharmacokinetics of Chiral Fluorinated and Deuterated Derivatives of Emixustat for Retinal Therapy. J Med Chem. 10.1021/acs.jmedchem.1c00279
Doherty, E. E., Wilcox, X. E., Fiet, Lvan Sint, Kemmel, C., Turunen, J. J., Klein, B., Tantillo, D. J., Fisher, A. J., and Beal, P. A. (2021) Rational Design of RNA Editing Guide Strands: Cytidine Analogs at the Orphan Position. J Am Chem Soc. 143, 6865-6876
Kiser, P. D., Zhang, J., Badiee, M., Kinoshita, J., Peachey, N. S., Tochtrop, G. P., and Palczewski, K. (2017) Rational Tuning of Visual Cycle Modulator Pharmacodynamics. J Pharmacol Exp Ther. 362, 131-145
Hauser, B. M., Sangesland, M., St Denis, K. J., Lam, E. C., Case, J. Brett, Windsor, I. W., Feldman, J., Caradonna, T. M., Kannegieter, T., Diamond, M. S., Balazs, A. B., Lingwood, D., and Schmidt, A. G. (2022) Rationally designed immunogens enable immune focusing following SARS-CoV-2 spike imprinting. Cell Rep. 38, 110561
Boekhout, M., Karasu, M. E., Wang, J., Acquaviva, L., Pratto, F., Brick, K., Eng, D. Y., Xu, J., R Camerini-Otero, D., Patel, D. J., and Keeney, S. (2019) REC114 Partner ANKRD31 Controls Number, Timing, and Location of Meiotic DNA Breaks. Mol Cell. 10.1016/j.molcel.2019.03.023
Boekhout, M., Karasu, M. E., Wang, J., Acquaviva, L., Pratto, F., Brick, K., Eng, D. Y., Xu, J., R Camerini-Otero, D., Patel, D. J., and Keeney, S. (2019) REC114 Partner ANKRD31 Controls Number, Timing, and Location of Meiotic DNA Breaks. Mol Cell. 10.1016/j.molcel.2019.03.023
Roark, R. S., Li, H., Williams, W. B., Chug, H., Mason, R. D., Gorman, J., Wang, S., Lee, F. - H., Rando, J., Bonsignori, M., Hwang, K. - K., Saunders, K. O., Wiehe, K., M Moody, A., Hraber, P. T., Wagh, K., Giorgi, E. E., Russell, R. M., Bibollet-Ruche, F., Liu, W., Connell, J., Smith, A. G., DeVoto, J., Murphy, A. I., Smith, J., Ding, W., Zhao, C., Chohan, N., Okumura, M., Rosario, C., Ding, Y., Lindemuth, E., Bauer, A. M., Bar, K. J., Ambrozak, D., Chao, C. W., Chuang, G. - Y., Geng, H., Lin, B. C., Louder, M. K., Nguyen, R., Zhang, B., Lewis, M. G., Raymond, D., Doria-Rose, N. A., Schramm, C. A., Douek, D. C., Roederer, M., Kepler, T. B., Kelsoe, G., Mascola, J. R., Kwong, P. D., Korber, B. T., Harrison, S. C., Haynes, B. F., Hahn, B. H., and Shaw, G. M. (2020) Recapitulation of HIV-1 Env-antibody coevolution in macaques leading to neutralization breadth. Science. 10.1126/science.abd2638
Roark, R. S., Li, H., Williams, W. B., Chug, H., Mason, R. D., Gorman, J., Wang, S., Lee, F. - H., Rando, J., Bonsignori, M., Hwang, K. - K., Saunders, K. O., Wiehe, K., M Moody, A., Hraber, P. T., Wagh, K., Giorgi, E. E., Russell, R. M., Bibollet-Ruche, F., Liu, W., Connell, J., Smith, A. G., DeVoto, J., Murphy, A. I., Smith, J., Ding, W., Zhao, C., Chohan, N., Okumura, M., Rosario, C., Ding, Y., Lindemuth, E., Bauer, A. M., Bar, K. J., Ambrozak, D., Chao, C. W., Chuang, G. - Y., Geng, H., Lin, B. C., Louder, M. K., Nguyen, R., Zhang, B., Lewis, M. G., Raymond, D., Doria-Rose, N. A., Schramm, C. A., Douek, D. C., Roederer, M., Kepler, T. B., Kelsoe, G., Mascola, J. R., Kwong, P. D., Korber, B. T., Harrison, S. C., Haynes, B. F., Hahn, B. H., and Shaw, G. M. (2020) Recapitulation of HIV-1 Env-antibody coevolution in macaques leading to neutralization breadth. Science. 10.1126/science.abd2638
Roark, R. S., Li, H., Williams, W. B., Chug, H., Mason, R. D., Gorman, J., Wang, S., Lee, F. - H., Rando, J., Bonsignori, M., Hwang, K. - K., Saunders, K. O., Wiehe, K., M Moody, A., Hraber, P. T., Wagh, K., Giorgi, E. E., Russell, R. M., Bibollet-Ruche, F., Liu, W., Connell, J., Smith, A. G., DeVoto, J., Murphy, A. I., Smith, J., Ding, W., Zhao, C., Chohan, N., Okumura, M., Rosario, C., Ding, Y., Lindemuth, E., Bauer, A. M., Bar, K. J., Ambrozak, D., Chao, C. W., Chuang, G. - Y., Geng, H., Lin, B. C., Louder, M. K., Nguyen, R., Zhang, B., Lewis, M. G., Raymond, D., Doria-Rose, N. A., Schramm, C. A., Douek, D. C., Roederer, M., Kepler, T. B., Kelsoe, G., Mascola, J. R., Kwong, P. D., Korber, B. T., Harrison, S. C., Haynes, B. F., Hahn, B. H., and Shaw, G. M. (2020) Recapitulation of HIV-1 Env-antibody coevolution in macaques leading to neutralization breadth. Science. 10.1126/science.abd2638
Roark, R. S., Li, H., Williams, W. B., Chug, H., Mason, R. D., Gorman, J., Wang, S., Lee, F. - H., Rando, J., Bonsignori, M., Hwang, K. - K., Saunders, K. O., Wiehe, K., M Moody, A., Hraber, P. T., Wagh, K., Giorgi, E. E., Russell, R. M., Bibollet-Ruche, F., Liu, W., Connell, J., Smith, A. G., DeVoto, J., Murphy, A. I., Smith, J., Ding, W., Zhao, C., Chohan, N., Okumura, M., Rosario, C., Ding, Y., Lindemuth, E., Bauer, A. M., Bar, K. J., Ambrozak, D., Chao, C. W., Chuang, G. - Y., Geng, H., Lin, B. C., Louder, M. K., Nguyen, R., Zhang, B., Lewis, M. G., Raymond, D., Doria-Rose, N. A., Schramm, C. A., Douek, D. C., Roederer, M., Kepler, T. B., Kelsoe, G., Mascola, J. R., Kwong, P. D., Korber, B. T., Harrison, S. C., Haynes, B. F., Hahn, B. H., and Shaw, G. M. (2020) Recapitulation of HIV-1 Env-antibody coevolution in macaques leading to neutralization breadth. Science. 10.1126/science.abd2638
Békés, M., van Noort, G. J. van der, Ekkebus, R., Ovaa, H., Huang, T. T., and Lima, C. D. (2016) Recognition of Lys48-Linked Di-ubiquitin and Deubiquitinating Activities of the SARS Coronavirus Papain-like Protease. Mol Cell. 62, 572-85
Chetty, A. K., Sexton, J. A., Ha, B. Hak, Turk, B. E., and Boggon, T. J. (2020) Recognition of physiological phosphorylation sites by p21-activated kinase 4. J Struct Biol. 211, 107553
Chatterjee, A., Li, Y., Zhang, Y., Grove, T. L., Lee, M., Krebs, C., Booker, S. J., Begley, T. P., and Ealick, S. E. (2008) Reconstitution of ThiC in thiamine pyrimidine biosynthesis expands the radical SAM superfamily. Nat Chem Biol. 4, 758-65
Chatterjee, A., Li, Y., Zhang, Y., Grove, T. L., Lee, M., Krebs, C., Booker, S. J., Begley, T. P., and Ealick, S. E. (2008) Reconstitution of ThiC in thiamine pyrimidine biosynthesis expands the radical SAM superfamily. Nat Chem Biol. 4, 758-65
Johnson, C. W., Seo, H. - S., Terrell, E. M., Yang, M. - H., KleinJan, F., Gebregiworgis, T., Gasmi-Seabrook, G. M. C., Geffken, E. A., Lakhani, J., Song, K., Bashyal, P., Popow, O., Paulo, J. A., Liu, A., Mattos, C., Marshall, C. B., Ikura, M., Morrison, D. K., Dhe-Paganon, S., and Haigis, K. M. (2022) Regulation of GTPase function by autophosphorylation. Mol Cell. 82, 950-968.e14
Kirouac, K. N., Basu, A. K., and Ling, H. (2013) Replication of a carcinogenic nitropyrene DNA lesion by human Y-family DNA polymerase. Nucleic Acids Res. 41, 2060-71
Liebschner, D., Dauter, M., Brzuszkiewicz, A., and Dauter, Z. (2013) On the reproducibility of protein crystal structures: five atomic resolution structures of trypsin. Acta Crystallogr D Biol Crystallogr. 69, 1447-62
Uervirojnangkoorn, M., Lyubimov, A. Y., Zhou, Q., Weis, W. I., and Brunger, A. T. (2019) Resolving indexing ambiguities in X-ray free-electron laser diffraction patterns. Acta Crystallogr D Struct Biol. 75, 234-241
Lee, S. - A., Yang, K. Jian Zhang, Brun, P. - J., Silvaroli, J. A., Yuen, J. J., Shmarakov, I., Jiang, H., Feranil, J. B., Li, X., Lackey, A. I., Krężel, W., Leibel, R. L., Libien, J., Storch, J., Golczak, M., and Blaner, W. S. (2020) Retinol-binding protein 2 (RBP2) binds monoacylglycerols and modulates gut endocrine signaling and body weight. Sci Adv. 6, eaay8937
Lee, S. - A., Yang, K. Jian Zhang, Brun, P. - J., Silvaroli, J. A., Yuen, J. J., Shmarakov, I., Jiang, H., Feranil, J. B., Li, X., Lackey, A. I., Krężel, W., Leibel, R. L., Libien, J., Storch, J., Golczak, M., and Blaner, W. S. (2020) Retinol-binding protein 2 (RBP2) binds monoacylglycerols and modulates gut endocrine signaling and body weight. Sci Adv. 6, eaay8937
Plau, J., Golczak, M., Paik, J., Calderon, R. M., and Blaner, W. S. (2022) Retinol-binding protein 2 (RBP2): More than just dietary retinoid uptake. Biochim Biophys Acta Mol Cell Biol Lipids. 1867, 159179

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