Publications

Found 1115 results
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Journal Article
Pierson, W. E., Hoffer, E. D., Keedy, H. E., Simms, C. L., Dunham, C. M., and Zaher, H. S. (2016) Uniformity of Peptide Release Is Maintained by Methylation of Release Factors. Cell Rep. 17, 11-8
Doud, M. B., Koksal, A. C., Mi, L. - Z., Song, G., Lu, C., and Springer, T. A. (2012) Unexpected fold in the circumsporozoite protein target of malaria vaccines. Proc Natl Acad Sci U S A. 109, 7817-22
Larson, G. W., Windsor, P. K., Smithwick, E., Shi, K., Aihara, H., Damodaran, A. Rama, and Bhagi-Damodaran, A. (2023) Understanding ATP Binding to DosS Catalytic Domain with a Short ATP-Lid. Biochemistry. 62, 3283-3292
Larson, G., Windsor, P., Smithwick, E., Shi, K., Aihara, H., Damodaran, A. Rama, and Bhagi-Damodaran, A. (2023) Understanding ATP binding to DosS catalytic domain with a short ATP-lid. bioRxiv. 10.1101/2023.05.29.542785
Leroy, E., Dusa, A., Colau, D., Motamedi, A., Cahu, X., Mouton, C., Huang, L. J., Shiau, A. K., and Constantinescu, S. N. (2016) Uncoupling JAK2 V617F activation from cytokine-induced signalling by modulation of JH2 αC helix.. Biochem J. 473, 1579-91
Ha, B. Hak, Davis, M. J., Chen, C., Lou, H. Jane, Gao, J., Zhang, R., Krauthammer, M., Halaban, R., Schlessinger, J., Turk, B. E., and Boggon, T. J. (2012) Type II p21-activated kinases (PAKs) are regulated by an autoinhibitory pseudosubstrate. Proc Natl Acad Sci U S A. 109, 16107-12
Mishra, A., Devarajan, B., Reardon, M. E., Dwivedi, P., Krishnan, V., Cisar, J. O., Das, A., Narayana, S. V. L., and Ton-That, H. (2011) Two autonomous structural modules in the fimbrial shaft adhesin FimA mediate Actinomyces interactions with streptococci and host cells during oral biofilm development. Mol Microbiol. 81, 1205-20
Mishra, A., Devarajan, B., Reardon, M. E., Dwivedi, P., Krishnan, V., Cisar, J. O., Das, A., Narayana, S. V. L., and Ton-That, H. (2011) Two autonomous structural modules in the fimbrial shaft adhesin FimA mediate Actinomyces interactions with streptococci and host cells during oral biofilm development. Mol Microbiol. 81, 1205-20
Mishra, A., Devarajan, B., Reardon, M. E., Dwivedi, P., Krishnan, V., Cisar, J. O., Das, A., Narayana, S. V. L., and Ton-That, H. (2011) Two autonomous structural modules in the fimbrial shaft adhesin FimA mediate Actinomyces interactions with streptococci and host cells during oral biofilm development. Mol Microbiol. 81, 1205-20
Yee, E. F., Dzikovski, B., and Crane, B. R. (2019) Tuning Radical Relay Residues by Proton Management Rescues Protein Electron Hopping. J Am Chem Soc. 141, 17571-17587
Chandrasekaran, S., Schneps, C. M., Dunleavy, R., Lin, C., DeOliveira, C. C., Ganguly, A., and Crane, B. R. (2021) Tuning flavin environment to detect and control light-induced conformational switching in Drosophila cryptochrome. Commun Biol. 4, 249
Chandrasekaran, S., Schneps, C. M., Dunleavy, R., Lin, C., DeOliveira, C. C., Ganguly, A., and Crane, B. R. (2021) Tuning flavin environment to detect and control light-induced conformational switching in Drosophila cryptochrome. Commun Biol. 4, 249
Golani, L. K., Wallace-Povirk, A., Deis, S. M., Wong, J., Ke, J., Gu, X., Raghavan, S., Wilson, M. R., Li, X., Polin, L., de Waal, P. W., White, K., Kushner, J., O'Connor, C., Hou, Z., H Xu, E., Melcher, K., Dann, C. E., Matherly, L. H., and Gangjee, A. (2016) Tumor Targeting with Novel 6-Substituted Pyrrolo [2,3-d] Pyrimidine Antifolates with Heteroatom Bridge Substitutions via Cellular Uptake by Folate Receptor α and the Proton-Coupled Folate Transporter and Inhibition of de Novo Purine Nucleotide Biosynthes. J Med Chem. 59, 7856-76
Golani, L. K., Wallace-Povirk, A., Deis, S. M., Wong, J., Ke, J., Gu, X., Raghavan, S., Wilson, M. R., Li, X., Polin, L., de Waal, P. W., White, K., Kushner, J., O'Connor, C., Hou, Z., H Xu, E., Melcher, K., Dann, C. E., Matherly, L. H., and Gangjee, A. (2016) Tumor Targeting with Novel 6-Substituted Pyrrolo [2,3-d] Pyrimidine Antifolates with Heteroatom Bridge Substitutions via Cellular Uptake by Folate Receptor α and the Proton-Coupled Folate Transporter and Inhibition of de Novo Purine Nucleotide Biosynthes. J Med Chem. 59, 7856-76
Golani, L. K., Wallace-Povirk, A., Deis, S. M., Wong, J., Ke, J., Gu, X., Raghavan, S., Wilson, M. R., Li, X., Polin, L., de Waal, P. W., White, K., Kushner, J., O'Connor, C., Hou, Z., H Xu, E., Melcher, K., Dann, C. E., Matherly, L. H., and Gangjee, A. (2016) Tumor Targeting with Novel 6-Substituted Pyrrolo [2,3-d] Pyrimidine Antifolates with Heteroatom Bridge Substitutions via Cellular Uptake by Folate Receptor α and the Proton-Coupled Folate Transporter and Inhibition of de Novo Purine Nucleotide Biosynthes. J Med Chem. 59, 7856-76
Campbell, A. C., Stiers, K. M., Del Campo, J. S. Martin, Mehra-Chaudhary, R., Sobrado, P., and Tanner, J. J. (2020) Trapping conformational states of a flavin-dependent N-monooxygenase in crystallo reveals protein and flavin dynamics. J Biol Chem. 10.1074/jbc.RA120.014750
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
Le Thomas, A., Stuwe, E., Li, S., Du, J., Marinov, G., Rozhkov, N., Chen, Y. - C. Ariel, Luo, Y., Sachidanandam, R., Toth, K. Fejes, Patel, D., and Aravin, A. A. (2014) Transgenerationally inherited piRNAs trigger piRNA biogenesis by changing the chromatin of piRNA clusters and inducing precursor processing. Genes Dev. 28, 1667-80
Zhao, S., Lu, J., Pan, B., Fan, H., Byrum, S. D., Xu, C., Kim, A., Guo, Y., Kanchi, K. L., Gong, W., Sun, T., Storey, A. J., Burkholder, N. T., Mackintosh, S. G., Kuhlers, P. C., Edmondson, R. D., Strahl, B. D., Diao, Y., Tackett, A. J., Raab, J. R., Cai, L., Song, J., and Wang, G. Greg (2023) TNRC18 engages H3K9me3 to mediate silencing of endogenous retrotransposons. Nature. 623, 633-642
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
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
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
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
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
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

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