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Ziegler, S. J., Liu, C., Landau, M., Buzovetsky, O., Desimmie, B. A., Zhao, Q., Sasaki, T., Burdick, R. C., Pathak, V. K., Anderson, K. S., and Xiong, Y. (2018) Insights into DNA substrate selection by APOBEC3G from structural, biochemical, and functional studies. PLoS One. 13, e0195048
Zhu, W., Haile, A. M., Singh, R. K., Larson, J. D., Smithen, D., Chan, J. Y., Tanner, J. J., and Becker, D. F. (2013) Involvement of the β3-α3 loop of the proline dehydrogenase domain in allosteric regulation of membrane association of proline utilization A.. Biochemistry. 52, 4482-91
Zhong, M., Lynch, A., Muellers, S. N., Jehle, S., Luo, L., Hall, D. R., Iwase, R., Carolan, J. P., Egbert, M., Wakefield, A., Streu, K., Harvey, C. M., Ortet, P. C., Kozakov, D., Vajda, S., Allen, K. N., and Whitty, A. (2020) Interaction Energetics and Druggability of the Protein-Protein Interaction between Kelch-like ECH-Associated Protein 1 (KEAP1) and Nuclear Factor Erythroid 2 Like 2 (Nrf2). Biochemistry. 10.1021/acs.biochem.9b00943
Zhang, Y., Chun, Y., Buratowski, S., and Tong, L. (2019) Identification of Three Sequence Motifs in the Transcription Termination Factor Sen1 that Mediate Direct Interactions with Nrd1. Structure. 27, 1156-1161.e4
Zeiske, T., Baburajendran, N., Kaczynska, A., Brasch, J., Palmer, A. G., Shapiro, L., Honig, B., and Mann, R. S. (2018) Intrinsic DNA Shape Accounts for Affinity Differences between Hox-Cofactor Binding Sites. Cell Rep. 24, 2221-2230
Zang, Y., Wang, W. - H., Wu, S. - W., Ealick, S. E., and Wang, C. C. (2005) Identification of a subversive substrate of Trichomonas vaginalis purine nucleoside phosphorylase and the crystal structure of the enzyme-substrate complex. J Biol Chem. 280, 22318-25
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Wyatt, J. W., Korasick, D. A., Qureshi, I. A., Campbell, A. C., Gates, K. S., and Tanner, J. J. (2020) Inhibition, crystal structures, and in-solution oligomeric structure of aldehyde dehydrogenase 9A1. Arch Biochem Biophys. 691, 108477
Wing, R. A., Bailey, S., and Steitz, T. A. (2008) Insights into the replisome from the structure of a ternary complex of the DNA polymerase III alpha-subunit. J Mol Biol. 382, 859-69
Weinberg, D. E., Nakanishi, K., Patel, D. J., and Bartel, D. P. (2011) The inside-out mechanism of Dicers from budding yeasts. Cell. 146, 262-76
Wang, J., Dye, B. T., Rajashankar, K. R., Kurinov, I., and Schulman, B. A. (2009) Insights into anaphase promoting complex TPR subdomain assembly from a CDC26-APC6 structure. Nat Struct Mol Biol. 16, 987-9
Wang, M., Xia, S., Blaha, G., Steitz, T. A., Konigsberg, W. H., and Wang, J. (2011) Insights into base selectivity from the 1.8 Å resolution structure of an RB69 DNA polymerase ternary complex.. Biochemistry. 50, 581-90
Wagner, F. F., Bishop, J. A., Gale, J. P., Shi, X., Walk, M., Ketterman, J., Patnaik, D., Barker, D., Walpita, D., Campbell, A. J., Nguyen, S., Lewis, M., Ross, L., Weïwer, M., W An, F., Germain, A. R., Nag, P. P., Metkar, S., Kaya, T., Dandapani, S., Olson, D. E., Barbe, A. - L., Lazzaro, F., Sacher, J. R., Cheah, J. H., Fei, D., Perez, J., Munoz, B., Palmer, M., Stegmaier, K., Schreiber, S. L., Scolnick, E., Zhang, Y. - L., Haggarty, S. J., Holson, E. B., and Pan, J. Q. (2016) Inhibitors of Glycogen Synthase Kinase 3 with Exquisite Kinome-Wide Selectivity and Their Functional Effects. ACS Chem Biol. 11, 1952-63
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Tripathi, S., Zhang, D., and Paukstelis, P. J. (2015) An intercalation-locked parallel-stranded DNA tetraplex. Nucleic Acids Res. 43, 1937-44
Tormos, J. R., Taylor, A. B., S Daubner, C., P Hart, J., and Fitzpatrick, P. F. (2010) Identification of a hypothetical protein from Podospora anserina as a nitroalkane oxidase. Biochemistry. 49, 5035-41
Tomasic, I. B., Metcalf, M. C., Guce, A. I., Clark, N. E., and Garman, S. C. (2010) Interconversion of the specificities of human lysosomal enzymes associated with Fabry and Schindler diseases. J Biol Chem. 285, 21560-6
Thompson, M. C., Wheatley, N. M., Jorda, J., Sawaya, M. R., Gidaniyan, S. D., Ahmed, H., Yang, Z., McCarty, K. N., Whitelegge, J. P., and Yeates, T. O. (2014) Identification of a unique Fe-S cluster binding site in a glycyl-radical type microcompartment shell protein. J Mol Biol. 426, 3287-304
Taylor, S. K., Tran, T. H., Liu, M. Z., Harris, P. E., Sun, Y., Jambawalikar, S. R., Tong, L., and Stojanovic, M. N. (2018) Insulin Hexamer-Caged Gadolinium Ion as MRI Contrast-o-phore. Chemistry. 24, 10646-10652
Tayeb-Fligelman, E., Cheng, X., Tai, C., Bowler, J. T., Griner, S., Sawaya, M. R., Seidler, P. M., Jiang, Y. Xiao, Lu, J., Rosenberg, G. M., Salwinski, L., Abskharon, R., Zee, C. - T., Hou, K., Li, Y., Boyer, D. R., Murray, K. A., Falcon, G., Anderson, D. H., Cascio, D., Saelices, L., Damoiseaux, R., Guo, F., and Eisenberg, D. S. (2021) Inhibition of amyloid formation of the Nucleoprotein of SARS-CoV-2. bioRxiv. 10.1101/2021.03.05.434000
Tang, H., Zhang, J., Shi, K., Aihara, H., and Du, G. (2019) Insight into subtilisin E-S7 cleavage pattern based on crystal structure and hydrolysates peptide analysis. Biochem Biophys Res Commun. 10.1016/j.bbrc.2019.03.064
Tang, C., Ji, X., Wu, L., and Xiong, Y. (2015) Impaired dNTPase activity of SAMHD1 by phosphomimetic mutation of Thr-592. J Biol Chem. 290, 26352-9
Tanaka, S., Sawaya, M. R., Phillips, M., and Yeates, T. O. (2009) Insights from multiple structures of the shell proteins from the beta-carboxysome. Protein Sci. 18, 108-20

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