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Hausmann, J., Kamtekar, S., Christodoulou, E., Day, J. E., Wu, T., Fulkerson, Z., Albers, H. M. H. G., van Meeteren, L. A., Houben, A. J. S., van Zeijl, L., Jansen, S., Andries, M., Hall, ii, T., Pegg, L. E., Benson, T. E., Kasiem, M., Harlos, K., Kooi, C. W. Vander, Smyth, S. S., Ovaa, H., Bollen, M., Morris, A. J., Moolenaar, W. H., and Perrakis, A. (2011) Structural basis of substrate discrimination and integrin binding by autotaxin. Nat Struct Mol Biol. 18, 198-204
Fenwick, M. K., Su, D., Dong, M., Lin, H., and Ealick, S. E. (2020) Structural Basis of the Substrate Selectivity of Viperin. Biochemistry. 10.1021/acs.biochem.9b00741
Cho, J., Lee, M., C Cochrane, S., Webster, C. G., Fenton, B. A., Zhao, J., Hong, J., and Zhou, P. (2020) Structural basis of the UDP-diacylglucosamine pyrophosphohydrolase LpxH inhibition by sulfonyl piperazine antibiotics. Proc Natl Acad Sci U S A. 117, 4109-4116
He, F., DuPrez, K., Hilario, E., Chen, Z., and Fan, L. (2020) Structural basis of the XPB helicase-Bax1 nuclease complex interacting with the repair bubble DNA. Nucleic Acids Res. 48, 11695-11705
Teplova, M., Farazi, T. A., Tuschl, T., and Patel, D. J. (2016) Structural basis underlying CAC RNA recognition by the RRM domain of dimeric RNA-binding protein RBPMS. Q Rev Biophys. 49, e1
Aquino, B., Couñago, R. M., Verza, N., Ferreira, L. M., Massirer, K. B., Gileadi, O., and Arruda, P. (2017) Structural Characterization of Maize SIRK1 Kinase Domain Reveals an Unusual Architecture of the Activation Segment. Front Plant Sci. 8, 852
Wachter, F., Nowak, R. P., Ficarro, S., Marto, J., and Fischer, E. S. (2024) Structural characterization of methylation-independent PP2A assembly guides alphafold2Multimer prediction of family-wide PP2A complexes. J Biol Chem. 300, 107268
Wachter, F., Nowak, R. P., Ficarro, S., Marto, J., and Fischer, E. S. (2024) Structural characterization of methylation-independent PP2A assembly guides alphafold2Multimer prediction of family-wide PP2A complexes. J Biol Chem. 300, 107268
Lormand, J. D., Kim, S. - K., Walters-Marrah, G. A., Brownfield, B. A., J Fromme, C., Winkler, W. C., Goodson, J. R., Lee, V. T., and Sondermann, H. (2021) Structural characterization of NrnC identifies unifying features of dinucleotidases. Elife. 10.7554/eLife.70146
Faust, T. B., Yoon, H., Nowak, R. P., Donovan, K. A., Li, Z., Cai, Q., Eleuteri, N. A., Zhang, T., Gray, N. S., and Fischer, E. S. (2020) Structural complementarity facilitates E7820-mediated degradation of RBM39 by DCAF15. Nat Chem Biol. 16, 7-14
Faust, T. B., Yoon, H., Nowak, R. P., Donovan, K. A., Li, Z., Cai, Q., Eleuteri, N. A., Zhang, T., Gray, N. S., and Fischer, E. S. (2020) Structural complementarity facilitates E7820-mediated degradation of RBM39 by DCAF15. Nat Chem Biol. 16, 7-14
Bradley, T., Fera, D., Bhiman, J., Eslamizar, L., Lu, X., Anasti, K., Zhang, R., Sutherland, L. L., Scearce, R. M., Bowman, C. M., Stolarchuk, C., Lloyd, K. E., Parks, R., Eaton, A., Foulger, A., Nie, X., Karim, S. S. Abdool, Barnett, S., Kelsoe, G., Kepler, T. B., S Alam, M., Montefiori, D. C., M Moody, A., Liao, H. - X., Morris, L., Santra, S., Harrison, S. C., and Haynes, B. F. (2016) Structural Constraints of Vaccine-Induced Tier-2 Autologous HIV Neutralizing Antibodies Targeting the Receptor-Binding Site. Cell Rep. 14, 43-54
Bradley, T., Fera, D., Bhiman, J., Eslamizar, L., Lu, X., Anasti, K., Zhang, R., Sutherland, L. L., Scearce, R. M., Bowman, C. M., Stolarchuk, C., Lloyd, K. E., Parks, R., Eaton, A., Foulger, A., Nie, X., Karim, S. S. Abdool, Barnett, S., Kelsoe, G., Kepler, T. B., S Alam, M., Montefiori, D. C., M Moody, A., Liao, H. - X., Morris, L., Santra, S., Harrison, S. C., and Haynes, B. F. (2016) Structural Constraints of Vaccine-Induced Tier-2 Autologous HIV Neutralizing Antibodies Targeting the Receptor-Binding Site. Cell Rep. 14, 43-54
Goris, M., Magin, R. S., Foyn, H., Myklebust, L. M., Varland, S., Ree, R., Drazic, A., Bhambra, P., Støve, S. I., Baumann, M., Haug, B. Erik, Marmorstein, R., and Arnesen, T. (2018) Structural determinants and cellular environment define processed actin as the sole substrate of the N-terminal acetyltransferase NAA80. Proc Natl Acad Sci U S A. 115, 4405-4410
Shek, R., Hilaire, T., Sim, J., and French, J. B. (2019) Structural Determinants for Substrate Selectivity in Guanine Deaminase Enzymes of the Amidohydrolase Superfamily. Biochemistry. 58, 3280-3292
Pruitt, R. N., Chumbler, N. M., Rutherford, S. A., Farrow, M. A., Friedman, D. B., Spiller, B., and D Lacy, B. (2012) Structural determinants of Clostridium difficile toxin A glucosyltransferase activity. J Biol Chem. 287, 8013-20
Pruitt, R. N., Chumbler, N. M., Rutherford, S. A., Farrow, M. A., Friedman, D. B., Spiller, B., and D Lacy, B. (2012) Structural determinants of Clostridium difficile toxin A glucosyltransferase activity. J Biol Chem. 287, 8013-20
Sander, C. L., Luu, J., Kim, K., Furkert, D., Jang, K., Reichenwallner, J., Kang, M. S., Lee, H. - J., Eger, B. T., Choe, H. - W., Fiedler, D., Ernst, O. P., Kim, Y. Ju, Palczewski, K., and Kiser, P. D. (2021) Structural evidence for visual arrestin priming via complexation of phosphoinositols. Structure. 10.1016/j.str.2021.10.002
Sander, C. L., Luu, J., Kim, K., Furkert, D., Jang, K., Reichenwallner, J., Kang, M. S., Lee, H. - J., Eger, B. T., Choe, H. - W., Fiedler, D., Ernst, O. P., Kim, Y. Ju, Palczewski, K., and Kiser, P. D. (2021) Structural evidence for visual arrestin priming via complexation of phosphoinositols. Structure. 10.1016/j.str.2021.10.002
Fribourgh, J. L., Nguyen, H. C., Matreyek, K. A., Alvarez, F. Joan D., Summers, B. J., Dewdney, T. G., Aiken, C., Zhang, P., Engelman, A., and Xiong, Y. (2014) Structural insight into HIV-1 restriction by MxB. Cell Host Microbe. 16, 627-638
Wittenborn, E. C., Cohen, S. E., Merrouch, M., Léger, C., Fourmond, V., Dementin, S., and Drennan, C. L. (2019) Structural insight into metallocofactor maturation in carbon monoxide dehydrogenase. J Biol Chem. 294, 13017-13026
Wang, Y., Feng, H., Zhu, Y., and Gao, P. (2017) Structural insights into glutathione-mediated activation of the master regulator PrfA in Listeria monocytogenes. Protein Cell. 8, 308-312
Czyzyk, D., Yan, W., Messing, S., Gillette, W., Tsuji, T., Yamaguchi, M., Furuzono, S., Turner, D. M., Esposito, D., Nissley, D. V., McCormick, F., and Simanshu, D. K. (2025) Structural insights into isoform-specific RAS-PI3Kα interactions and the role of RAS in PI3Kα activation.. Nat Commun. 16, 525
Viennet, T., Yin, M., Jayaraj, A., Kim, W., Sun, Z. - Y. J., Fujiwara, Y., Zhang, K., Seruggia, D., Seo, H. - S., Dhe-Paganon, S., Orkin, S. H., and Arthanari, H. (2024) Structural Insights into the DNA-Binding Mechanism of BCL11A: The Integral Role of ZnF6. bioRxiv. 10.1101/2024.01.17.576058
Viennet, T., Yin, M., Jayaraj, A., Kim, W., Sun, Z. - Y. J., Fujiwara, Y., Zhang, K., Seruggia, D., Seo, H. - S., Dhe-Paganon, S., Orkin, S. H., and Arthanari, H. (2024) Structural insights into the DNA-binding mechanism of BCL11A: The integral role of ZnF6. Structure. 32, 2276-2286.e4

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