Publications

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Journal Article
Vemulapalli, V., Donovan, K. A., Seegar, T. C. M., Rogers, J. M., Bae, M., Lumpkin, R. J., Cao, R., Henke, M. T., Ray, S. S., Fischer, E. S., Cuny, G. D., and Blacklow, S. C. (2021) Targeted Degradation of the Oncogenic Phosphatase SHP2. Biochemistry. 60, 2593-2609
De Schutter, J. W., Morrison, J. P., Morrison, M. J., Ciulli, A., and Imperiali, B. (2017) Targeting Bacillosamine Biosynthesis in Bacterial Pathogens: Development of Inhibitors to a Bacterial Amino-Sugar Acetyltransferase from Campylobacter jejuni. J Med Chem. 60, 2099-2118
Gulati, S., Jin, H., Masuho, I., Orban, T., Cai, Y., Pardon, E., Martemyanov, K. A., Kiser, P. D., Stewart, P. L., Ford, C. P., Steyaert, J., and Palczewski, K. (2018) Targeting G protein-coupled receptor signaling at the G protein level with a selective nanobody inhibitor. Nat Commun. 9, 1996
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
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
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
Jensen, J. L., Sankhala, R. S., Dussupt, V., Bai, H., Hajduczki, A., Lal, K. G., Chang, W. C., Martinez, E. J., Peterson, C. E., Golub, E. S., Rees, P. A., Mendez-Rivera, L., Zemil, M., Kavusak, E., Mayer, S. V., Wieczorek, L., Kannan, S., Doranz, B. J., Davidson, E., Yang, E. Sung, Zhang, Y., Chen, M., Choe, M., Wang, L., Gromowski, G. D., Koup, R. A., Michael, N. L., Polonis, V. R., Rolland, M., Modjarrad, K., Krebs, S. J., and M Joyce, G. (2023) Targeting the Spike Receptor Binding Domain Class V Cryptic Epitope by an Antibody with Pan-Sarbecovirus Activity. J Virol. 97, e0159622
Ruiz, V. G., Czyzyk, D. J., Kumar, V. P., Jorgensen, W. L., and Anderson, K. S. (2020) Targeting the TS dimer interface in bifunctional Cryptosporidium hominis TS-DHFR from parasitic protozoa: Virtual screening identifies novel TS allosteric inhibitors. Bioorg Med Chem Lett. 30, 127292
Koide, A., Wojcik, J., Gilbreth, R. N., Hoey, R. J., and Koide, S. (2012) Teaching an old scaffold new tricks: monobodies constructed using alternative surfaces of the FN3 scaffold. J Mol Biol. 415, 393-405
Takai, H., Xie, Y., de Lange, T., and Pavletich, N. P. (2010) Tel2 structure and function in the Hsp90-dependent maturation of mTOR and ATR complexes. Genes Dev. 24, 2019-30
Liu, S., Li, S., Yang, Y., and Li, W. (2020) Termini restraining of small membrane proteins enables structure determination at near-atomic resolution. Sci Adv. 10.1126/sciadv.abe3717
Toor, N., Keating, K. S., Fedorova, O., Rajashankar, K., Wang, J., and Pyle, A. Marie (2010) Tertiary architecture of the Oceanobacillus iheyensis group II intron. RNA. 16, 57-69
Frappier, V., Jenson, J. M., Zhou, J., Grigoryan, G., and Keating, A. E. (2019) Tertiary Structural Motif Sequence Statistics Enable Facile Prediction and Design of Peptides that Bind Anti-apoptotic Bfl-1 and Mcl-1. Structure. 10.1016/j.str.2019.01.008
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
Perez, A. M., Wolfe, J. A., Schermerhorn, J. T., Qian, Y., Cela, B. A., Kalinowski, C. R., Largoza, G. E., Fields, P. A., and Brandt, G. S. (2021) Thermal stability and structure of glyceraldehyde-3-phosphate dehydrogenase from the coral . RSC Adv. 11, 10364-10374
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
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
Obiero, J., Pittet, V., Bonderoff, S. A., and Sanders, D. A. R. (2010) Thioredoxin system from Deinococcus radiodurans. J Bacteriol. 192, 494-501
Margolis, H. K., Katzenell, S., Leary, K. A., and Ragusa, M. J. (2020) The Third Coiled Coil Domain of Atg11 Is Required for Shaping Mitophagy Initiation Sites. J Mol Biol. 10.1016/j.jmb.2020.08.025
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
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
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
Oi, C., Treado, J. D., Levine, Z. A., Lim, C. S., Knecht, K. M., Xiong, Y., O'Hern, C. S., and Regan, L. (2018) A threonine zipper that mediates protein-protein interactions: Structure and prediction. Protein Sci. 27, 1969-1977
Zhang, L., Lu, X., Lu, J., Liang, H., Dai, Q., Xu, G. - L., Luo, C., Jiang, H., and He, C. (2012) Thymine DNA glycosylase specifically recognizes 5-carboxylcytosine-modified DNA. Nat Chem Biol. 8, 328-30
Morgado-Palacin, L., Brown, J. A., Martinez, T. F., Garcia-Pedrero, J. M., Forouhar, F., S Quinn, A., Reglero, C., Vaughan, J., Heydary, Y. Hajy, Donaldson, C., Rodriguez-Perales, S., Allonca, E., Granda-Diaz, R., Fernandez, A. F., Fraga, M. F., Kim, A. L., Santos-Juanes, J., Owens, D. M., Rodrigo, J. P., Saghatelian, A., and Ferrando, A. A. (2023) The TINCR ubiquitin-like microprotein is a tumor suppressor in squamous cell carcinoma. Nat Commun. 14, 1328

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