Publications

Found 1143 results
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Journal Article
Bryk, R., Arango, N., Venugopal, A., J Warren, D., Park, Y. - H., Patel, M. S., Lima, C. D., and Nathan, C. (2010) Triazaspirodimethoxybenzoyls as selective inhibitors of mycobacterial lipoamide dehydrogenase . Biochemistry. 49, 1616-27
Huguenin-Dezot, N., Alonzo, D. A., Heberlig, G. W., Mahesh, M., Nguyen, D. P., Dornan, M. H., Boddy, C. N., T Schmeing, M., and Chin, J. W. (2019) Trapping biosynthetic acyl-enzyme intermediates with encoded 2,3-diaminopropionic acid. Nature. 565, 112-117
Mondal, S., Jacoby, G., Sawaya, M. R., Arnon, Z. A., Adler-Abramovich, L., Rehak, P., Vuković, L., Shimon, L. J. W., Král, P., Beck, R., and Gazit, E. (2018) Transition of metastable cross-α crystals into cross-β fibrils by β-turn flipping.. J Am Chem Soc. 10.1021/jacs.8b10289
Fenwick, M. K., Philmus, B., Begley, T. P., and Ealick, S. E. (2011) Toxoflavin lyase requires a novel 1-His-2-carboxylate facial triad. Biochemistry. 50, 1091-100
Soragni, A., Yousefi, S., Stoeckle, C., Soriaga, A. B., Sawaya, M. R., Kozlowski, E., Schmid, I., Radonjic-Hoesli, S., Boutet, S., Williams, G. J., Messerschmidt, M., M Seibert, M., Cascio, D., Zatsepin, N. A., Burghammer, M., Riekel, C., Colletier, J. - P., Riek, R., Eisenberg, D. S., and Simon, H. - U. (2015) Toxicity of eosinophil MBP is repressed by intracellular crystallization and promoted by extracellular aggregation. Mol Cell. 57, 1011-21
Soragni, A., Yousefi, S., Stoeckle, C., Soriaga, A. B., Sawaya, M. R., Kozlowski, E., Schmid, I., Radonjic-Hoesli, S., Boutet, S., Williams, G. J., Messerschmidt, M., M Seibert, M., Cascio, D., Zatsepin, N. A., Burghammer, M., Riekel, C., Colletier, J. - P., Riek, R., Eisenberg, D. S., and Simon, H. - U. (2015) Toxicity of eosinophil MBP is repressed by intracellular crystallization and promoted by extracellular aggregation. Mol Cell. 57, 1011-21
Landau, M., Sawaya, M. R., Faull, K. F., Laganowsky, A., Jiang, L., Sievers, S. A., Liu, J., Barrio, J. R., and Eisenberg, D. (2011) Towards a pharmacophore for amyloid. PLoS Biol. 9, e1001080
Koirala, S., Klein, J., Zheng, Y., Glenn, N. O., Eisemann, T., Tacer, K. Fon, Miller, D. J., Kulak, O., Lu, M., Finkelstein, D. B., Neale, G., Tillman, H., Vogel, P., Strand, D. W., Lum, L., Brautigam, C. A., Pascal, J. M., Clements, W. K., and Potts, P. Ryan (2020) Tissue-Specific Regulation of the Wnt/β-Catenin Pathway by PAGE4 Inhibition of Tankyrase.. Cell Rep. 32, 107922
Bauer, J. A., Bennett, E. M., Begley, T. P., and Ealick, S. E. (2004) Three-dimensional structure of YaaE from Bacillus subtilis, a glutaminase implicated in pyridoxal-5'-phosphate biosynthesis. J Biol Chem. 279, 2704-11
Bauer, J. A., Bennett, E. M., Begley, T. P., and Ealick, S. E. (2004) Three-dimensional structure of YaaE from Bacillus subtilis, a glutaminase implicated in pyridoxal-5'-phosphate biosynthesis. J Biol Chem. 279, 2704-11
Bauer, J. A., Bennett, E. M., Begley, T. P., and Ealick, S. E. (2004) Three-dimensional structure of YaaE from Bacillus subtilis, a glutaminase implicated in pyridoxal-5'-phosphate biosynthesis. J Biol Chem. 279, 2704-11
Broussard, T. C., Kobe, M. J., Pakhomova, S., Neau, D. B., Price, A. E., Champion, T. S., and Waldrop, G. L. (2013) The three-dimensional structure of the biotin carboxylase-biotin carboxyl carrier protein complex of E. coli acetyl-CoA carboxylase. Structure. 21, 650-7
Srivastava, D., Singh, R. K., Moxley, M. A., Henzl, M. T., Becker, D. F., and Tanner, J. J. (2012) The three-dimensional structural basis of type II hyperprolinemia. J Mol Biol. 420, 176-89
Obiero, J., Pittet, V., Bonderoff, S. A., and Sanders, D. A. R. (2010) Thioredoxin system from Deinococcus radiodurans. J Bacteriol. 192, 494-501
Lai, R. - Y., Huang, S., Fenwick, M. K., Hazra, A., Zhang, Y., Rajashankar, K., Philmus, B., Kinsland, C., Sanders, J. Mansell, Ealick, S. E., and Begley, T. P. (2012) Thiamin pyrimidine biosynthesis in Candida albicans : a remarkable reaction between histidine and pyridoxal phosphate. J Am Chem Soc. 134, 9157-9
Settembre, E. C., Dorrestein, P. C., Zhai, H., Chatterjee, A., McLafferty, F. W., Begley, T. P., and Ealick, S. E. (2004) Thiamin biosynthesis in Bacillus subtilis: structure of the thiazole synthase/sulfur carrier protein complex. Biochemistry. 43, 11647-57
Greenberg, Z. J., Monlish, D. A., Bartnett, R. L., Yang, Y., Shen, G., Li, W., Bednarski, J. J., and Schuettpelz, L. G. (2020) The Tetraspanin CD53 Regulates Early B Cell Development by Promoting IL-7R Signaling. J Immunol. 204, 58-67
Greenberg, Z. J., Monlish, D. A., Bartnett, R. L., Yang, Y., Shen, G., Li, W., Bednarski, J. J., and Schuettpelz, L. G. (2020) The Tetraspanin CD53 Regulates Early B Cell Development by Promoting IL-7R Signaling. J Immunol. 204, 58-67
Grebien, F., Hantschel, O., Wojcik, J., Kaupe, I., Kovacic, B., Wyrzucki, A. M., Gish, G. D., Cerny-Reiterer, S., Koide, A., Beug, H., Pawson, T., Valent, P., Koide, S., and Superti-Furga, G. (2011) Targeting the SH2-kinase interface in Bcr-Abl inhibits leukemogenesis. Cell. 147, 306-19
Sivakumaren, S. Carmen, Shim, H., Zhang, T., Ferguson, F. M., Lundquist, M. R., Browne, C. M., Seo, H. - S., Paddock, M. N., Manz, T. D., Jiang, B., Hao, M. - F., Krishnan, P., Wang, D. G., T Yang, J., Kwiatkowski, N. P., Ficarro, S. B., Cunningham, J. M., Marto, J. A., Dhe-Paganon, S., Cantley, L. C., and Gray, N. S. (2020) Targeting the PI5P4K Lipid Kinase Family in Cancer Using Covalent Inhibitors. Cell Chem Biol. 10.1016/j.chembiol.2020.02.003
Brosey, C. A., Houl, J. H., Katsonis, P., Balapiti-Modarage, L. P. F., Bommagani, S., Arvai, A., Moiani, D., Bacolla, A., Link, T., Warden, L. S., Lichtarge, O., Jones, D. E., Ahmed, Z., and Tainer, J. A. (2021) Targeting SARS-CoV-2 Nsp3 macrodomain structure with insights from human poly(ADP-ribose) glycohydrolase (PARG) structures with inhibitors. Prog Biophys Mol Biol. 10.1016/j.pbiomolbio.2021.02.002
Brosey, C. A., Houl, J. H., Katsonis, P., Balapiti-Modarage, L. P. F., Bommagani, S., Arvai, A., Moiani, D., Bacolla, A., Link, T., Warden, L. S., Lichtarge, O., Jones, D. E., Ahmed, Z., and Tainer, J. A. (2021) Targeting SARS-CoV-2 Nsp3 macrodomain structure with insights from human poly(ADP-ribose) glycohydrolase (PARG) structures with inhibitors. Prog Biophys Mol Biol. 10.1016/j.pbiomolbio.2021.02.002
Brosey, C. A., Houl, J. H., Katsonis, P., Balapiti-Modarage, L. P. F., Bommagani, S., Arvai, A., Moiani, D., Bacolla, A., Link, T., Warden, L. S., Lichtarge, O., Jones, D. E., Ahmed, Z., and Tainer, J. A. (2021) Targeting SARS-CoV-2 Nsp3 macrodomain structure with insights from human poly(ADP-ribose) glycohydrolase (PARG) structures with inhibitors. Prog Biophys Mol Biol. 10.1016/j.pbiomolbio.2021.02.002
Brosey, C. A., Houl, J. H., Katsonis, P., Balapiti-Modarage, L. P. F., Bommagani, S., Arvai, A., Moiani, D., Bacolla, A., Link, T., Warden, L. S., Lichtarge, O., Jones, D. E., Ahmed, Z., and Tainer, J. A. (2021) Targeting SARS-CoV-2 Nsp3 macrodomain structure with insights from human poly(ADP-ribose) glycohydrolase (PARG) structures with inhibitors. Prog Biophys Mol Biol. 10.1016/j.pbiomolbio.2021.02.002
Zimanyi, C. M., Ando, N., Brignole, E. J., Asturias, F. J., Stubbe, J. A., and Drennan, C. L. (2012) Tangled up in knots: structures of inactivated forms of E. coli class Ia ribonucleotide reductase. Structure. 20, 1374-83

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