Publications

Found 943 results
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Journal Article
Beyett, T. S., Rana, J. K., Schaeffner, I. K., Heppner, D. E., and Eck, M. J. (2024) Structural Analysis of the Macrocyclic Inhibitor BI-4020 Binding to EGFR Kinase. ChemMedChem. 19, e202300343
Zhang, R., Li, X., and Boggon, T. J. (2015) Structural analysis of the KRIT1 ankyrin repeat and FERM domains reveals a conformationally stable ARD-FERM interface. J Struct Biol. 192, 449-56
Yu, A., Xing, Y., Harrison, S. C., and Kirchhausen, T. (2010) Structural analysis of the interaction between Dishevelled2 and clathrin AP-2 adaptor, a critical step in noncanonical Wnt signaling. Structure. 18, 1311-20
Yuan, Y., Fuse, S., Ostash, B., Sliz, P., Kahne, D., and Walker, S. (2008) Structural analysis of the contacts anchoring moenomycin to peptidoglycan glycosyltransferases and implications for antibiotic design. ACS Chem Biol. 3, 429-36
Broussard, T. C., Pakhomova, S., Neau, D. B., Bonnot, R., and Waldrop, G. L. (2015) Structural Analysis of Substrate, Reaction Intermediate, and Product Binding in Haemophilus influenzae Biotin Carboxylase. Biochemistry. 54, 3860-70
Rudolph, M. J., Vance, D. J., Cassidy, M. S., Rong, Y., and Mantis, N. J. (2017) Structural Analysis of Single Domain Antibodies Bound to a Second Neutralizing Hot Spot on Ricin Toxin's Enzymatic Subunit. J Biol Chem. 292, 872-883
Vinokur, J. M., Korman, T. P., Sawaya, M. R., Collazo, M., Cascio, D., and Bowie, J. U. (2015) Structural analysis of mevalonate-3-kinase provides insight into the mechanisms of isoprenoid pathway decarboxylases. Protein Sci. 24, 212-20
Santiago, Ada Silva, Couñago, R. M., Ramos, P. Zonzini, Godoi, P. H. C., Massirer, K. B., Gileadi, O., and Elkins, J. M. (2018) Structural Analysis of Inhibitor Binding to CAMKK1 Identifies Features Necessary for Design of Specific Inhibitors. Sci Rep. 8, 14800
Osko, J. D., Porter, N. J., Decroos, C., Lee, M. S., Watson, P. R., Raible, S. E., Krantz, I. D., Deardorff, M. A., and Christianson, D. W. (2020) Structural analysis of histone deacetylase 8 mutants associated with Cornelia de Lange Syndrome spectrum disorders. J Struct Biol. 213, 107681
Aranda, R., Cai, H., Worley, C. E., Levin, E. J., Li, R., Olson, J. S., Phillips, G. N., and Richards, M. P. (2009) Structural analysis of fish versus mammalian hemoglobins: effect of the heme pocket environment on autooxidation and hemin loss. Proteins. 75, 217-30
Cruz, V. E., F Demircioglu, E., and Schwartz, T. U. (2020) Structural analysis of different LINC complexes reveals distinct binding modes. J Mol Biol. 10.1016/j.jmb.2020.09.019
Harvey, C. M., O'Toole, K. H., Liu, C., Mariano, P., Dunaway-Mariano, D., and Allen, K. N. (2020) Structural Analysis of Binding Determinants of Trehalose-6-phosphate Phosphatase Using Ground-State Complexes. Biochemistry. 59, 3247-3257
Demirci, H., Murphy, F. V., Murphy, E. L., Connetti, J. L., Dahlberg, A. E., Jogl, G., and Gregory, S. T. (2014) Structural analysis of base substitutions in Thermus thermophilus 16S rRNA conferring streptomycin resistance. Antimicrob Agents Chemother. 58, 4308-17
Wong, C., Fujimori, D. Galonić, Walsh, C. T., and Drennan, C. L. (2009) Structural analysis of an open active site conformation of nonheme iron halogenase CytC3. J Am Chem Soc. 131, 4872-9
Li, L., Fierer, J. O., Rapoport, T. A., and Howarth, M. (2014) Structural analysis and optimization of the covalent association between SpyCatcher and a peptide Tag. J Mol Biol. 426, 309-17
Phelps, C. B., Huang, R. J., Lishko, P. V., Wang, R. R., and Gaudet, R. (2008) Structural analyses of the ankyrin repeat domain of TRPV6 and related TRPV ion channels. Biochemistry. 47, 2476-84
Wang, C., Chung, B. C., Yan, H., Wang, H. - G., Lee, S. - Y., and Pitt, G. S. (2014) Structural analyses of Ca²⁺/CaM interaction with NaV channel C-termini reveal mechanisms of calcium-dependent regulation.. Nat Commun. 5, 4896
Spiegelman, L., Bahn-Suh, A., Montaño, E. T., Zhang, L., Hura, G. L., Patras, K. A., Kumar, A., F Tezcan, A., Nizet, V., Tsutakawa, S. E., and Ghosh, P. (2022) Strengthening of enterococcal biofilms by Esp. PLoS Pathog. 18, e1010829
Ernst, A., Avvakumov, G., Tong, J., Fan, Y., Zhao, Y., Alberts, P., Persaud, A., Walker, J. R., Neculai, A. - M., Neculai, D., Vorobyov, A., Garg, P., Beatty, L., Chan, P. - K., Juang, Y. - C., Landry, M. - C., Yeh, C., Zeqiraj, E., Karamboulas, K., Allali-Hassani, A., Vedadi, M., Tyers, M., Moffat, J., Sicheri, F., Pelletier, L., Durocher, D., Raught, B., Rotin, D., Yang, J., Moran, M. F., Dhe-Paganon, S., and Sidhu, S. S. (2013) A strategy for modulation of enzymes in the ubiquitin system. Science. 339, 590-5
Makde, R. D., and Tan, S. (2013) Strategies for crystallizing a chromatin protein in complex with the nucleosome core particle. Anal Biochem. 442, 138-45
Papp-Wallace, K. M., Nguyen, N. Q., Jacobs, M. R., Bethel, C. R., Barnes, M. D., Kumar, V., Bajaksouzian, S., Rudin, S. D., Rather, P. N., Bhavsar, S., Ravikumar, T., Deshpande, P. K., Patil, V., Yeole, R., Bhagwat, S. S., Patel, M. V., van den Akker, F., and Bonomo, R. A. (2018) Strategic Approaches to Overcome Resistance against Gram-Negative Pathogens Using β-Lactamase Inhibitors and β-Lactam Enhancers: Activity of Three Novel Diazabicyclooctanes WCK 5153, Zidebactam (WCK 5107), and WCK 4234.. J Med Chem. 61, 4067-4086
Qi, Y., Nam, K., Spong, M. C., Banerjee, A., Sung, R. - J., Zhang, M., Karplus, M., and Verdine, G. L. (2012) Strandwise translocation of a DNA glycosylase on undamaged DNA. Proc Natl Acad Sci U S A. 109, 1086-91
Durzynska, I., Xu, X., Adelmant, G., Ficarro, S. B., Marto, J. A., Sliz, P., Uljon, S., and Blacklow, S. C. (2017) STK40 Is a Pseudokinase that Binds the E3 Ubiquitin Ligase COP1.. Structure. 25, 287-294
Morehouse, B. R., Govande, A. A., Millman, A., Keszei, A. F. A., Lowey, B., Ofir, G., Shao, S., Sorek, R., and Kranzusch, P. J. (2020) STING cyclic dinucleotide sensing originated in bacteria. Nature. 10.1038/s41586-020-2719-5
Mills, K. B., Maciag, J. J., Wang, C., Crawford, J. A., Enroth, T. J., Keim, K. C., Dufrêne, Y. F., D Robinson, A., Fey, P. D., Herr, A. B., and Horswill, A. R. (2024) Staphylococcus aureus skin colonization is mediated by SasG lectin variation. Cell Rep. 43, 114022

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