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Ghosh, S., Goldgur, Y., and Shuman, S. (2020) Mycobacterial DNA polymerase I: activities and crystal structures of the POL domain as apoenzyme and in complex with a DNA primer-template and of the full-length FEN/EXO-POL enzyme. Nucleic Acids Res. 10.1093/nar/gkaa075
Smaga, S. Sierra, Xu, C., Summers, B. James, Digianantonio, K. Marie, Perilla, J. R., and Xiong, Y. (2019) MxB Restricts HIV-1 by Targeting the Tri-hexamer Interface of the Viral Capsid. Structure. 10.1016/j.str.2019.04.015
Archer, C. R., Enslow, B. T., Taylor, A. B., De la Rosa, V., Bhattacharya, A., and Shapiro, M. S. (2019) A mutually-induced conformational fit underlies Ca-directed interactions between calmodulin and the proximal C terminus of KCNQ4 K channels. J Biol Chem. 10.1074/jbc.RA118.006857
Blaha, G., Gürel, G., Schroeder, S. J., Moore, P. B., and Steitz, T. A. (2008) Mutations outside the anisomycin-binding site can make ribosomes drug-resistant. J Mol Biol. 379, 505-19
Fenton, B. A., Tomberg, J., Sciandra, C. A., Nicholas, R. A., Davies, C., and Zhou, P. (2021) Mutations in PBP2 from Ceftriaxone-resistant Neisseria gonorrhoeae Alter the Dynamics of the β3-β4 Loop to Favor a Low-affinity Drug-binding State.. J Biol Chem. 10.1016/j.jbc.2021.101188
Kim, M., Sandford, E., Gatica, D., Qiu, Y., Liu, X., Zheng, Y., Schulman, B. A., Xu, J., Semple, I., Ro, S. - H., Kim, B., R Mavioglu, N., Tolun, A., Jipa, A., Takats, S., Karpati, M., Li, J. Z., Yapici, Z., Juhasz, G., Lee, J. Hee, Klionsky, D. J., and Burmeister, M. (2016) Mutation in ATG5 reduces autophagy and leads to ataxia with developmental delay. Elife. 10.7554/eLife.12245
Jenkins, A. L., Zhang, Y., Ealick, S. E., and Begley, T. P. (2008) Mutagenesis studies on TenA: a thiamin salvage enzyme from Bacillus subtilis. Bioorg Chem. 36, 29-32
Welsch, M. E., Kaplan, A., Chambers, J. M., Stokes, M. E., Bos, P. H., Zask, A., Zhang, Y., Sanchez-Martin, M., Badgley, M. A., Huang, C. S., Tran, T. H., Akkiraju, H., Brown, L. M., Nandakumar, R., Cremers, S., Yang, W. Seok, Tong, L., Olive, K. P., Ferrando, A., and Stockwell, B. R. (2017) Multivalent Small-Molecule Pan-RAS Inhibitors. Cell. 168, 878-889.e29
Garnham, C. P., Vemu, A., Wilson-Kubalek, E. M., Yu, I., Szyk, A., Lander, G. C., Milligan, R. A., and Roll-Mecak, A. (2015) Multivalent Microtubule Recognition by Tubulin Tyrosine Ligase-like Family Glutamylases. Cell. 161, 1112-1123
Girish, T. S., McGinty, R. K., and Tan, S. (2016) Multivalent Interactions by the Set8 Histone Methyltransferase With Its Nucleosome Substrate. J Mol Biol. 428, 1531-43
Yu, G., Zhao, Y., and Li, H. (2018) The multistructural forms of box C/D ribonucleoprotein particles. RNA. 24, 1625-1633
Chen, W., Mandali, S., Hancock, S. P., Kumar, P., Collazo, M., Cascio, D., and Johnson, R. C. (2018) Multiple serine transposase dimers assemble the transposon-end synaptic complex during IS-family transposition. Elife. 10.7554/eLife.39611
Tian, Y., Simanshu, D. K., Ascano, M., Diaz-Avalos, R., Park, A. Young, Juranek, S. A., Rice, W. J., Yin, Q., Robinson, C. V., Tuschl, T., and Patel, D. J. (2011) Multimeric assembly and biochemical characterization of the Trax-translin endonuclease complex. Nat Struct Mol Biol. 18, 658-64
Park, M. Seul, Araya-Secchi, R., Brackbill, J. A., Phan, H. - D., Kehling, A. C., El-Wahab, E. W. Abd, Dayeh, D. M., Sotomayor, M., and Nakanishi, K. (2019) Multidomain Convergence of Argonaute during RISC Assembly Correlates with the Formation of Internal Water Clusters. Mol Cell. 75, 725-740.e6
Reßing, N., Sönnichsen, M., Osko, J. D., Schöler, A., Schliehe-Diecks, J., Skerhut, A., Borkhardt, A., Hauer, J., Kassack, M. U., Christianson, D. W., Bhatia, S., and Hansen, F. K. (2020) Multicomponent Synthesis, Binding Mode, and Structure-Activity Relationship of Selective Histone Deacetylase 6 (HDAC6) Inhibitors with Bifurcated Capping Groups. J Med Chem. 63, 10339-10351
Yang, H., Rudge, D. G., Koos, J. D., Vaidialingam, B., Yang, H. J., and Pavletich, N. P. (2013) mTOR kinase structure, mechanism and regulation. Nature. 497, 217-23
Wohlever, M. L., Mateja, A., McGilvray, P. T., Day, K. J., and Keenan, R. J. (2017) Msp1 Is a Membrane Protein Dislocase for Tail-Anchored Proteins. Mol Cell. 67, 194-202.e6
Chang, Y., Sun, L., Kokura, K., Horton, J. R., Fukuda, M., Espejo, A., Izumi, V., Koomen, J. M., Bedford, M. T., Zhang, X., Shinkai, Y., Fang, J., and Cheng, X. (2011) MPP8 mediates the interactions between DNA methyltransferase Dnmt3a and H3K9 methyltransferase GLP/G9a. Nat Commun. 2, 533
Corbett, K. D., Yip, C. K., Ee, L. - S., Walz, T., Amon, A., and Harrison, S. C. (2010) The monopolin complex crosslinks kinetochore components to regulate chromosome-microtubule attachments. Cell. 142, 556-67
Pavelich, I. J., Maehigashi, T., Hoffer, E. D., Ruangprasert, A., Miles, S. J., and Dunham, C. M. (2019) Monomeric YoeB toxin retains RNase activity but adopts an obligate dimeric form for thermal stability. Nucleic Acids Res. 10.1093/nar/gkz760
Sha, F., Kurosawa, K., Glasser, E., Ketavarapu, G., Albazzaz, S., Koide, A., and Koide, S. (2023) Monobody Inhibitor Selective to the Phosphatase Domain of SHP2 and its Use as a Probe for Quantifying SHP2 Allosteric Regulation. J Mol Biol. 435, 168010
Torrens-Spence, M. Patrick, Liu, C. - T., Pluskal, T., Chung, Y. Kwan, and Weng, J. - K. (2018) Monoamine Biosynthesis via a Noncanonical Calcium-Activatable Aromatic Amino Acid Decarboxylase in Psilocybin Mushroom. ACS Chem Biol. 13, 3343-3353
Tompkins, K. J., Houtti, M., Litzau, L. A., Aird, E. J., Everett, B. A., Nelson, A. T., Pornschloegl, L., Limón-Swanson, L. K., Evans, R. L., Evans, K., Shi, K., Aihara, H., and Gordon, W. R. (2021) Molecular underpinnings of ssDNA specificity by Rep HUH-endonucleases and implications for HUH-tag multiplexing and engineering. Nucleic Acids Res. 49, 1046-1064
Cheng, Z., Cheung, P., Kuo, A. J., Yukl, E. T., Wilmot, C. M., Gozani, O., and Patel, D. J. (2014) A molecular threading mechanism underlies Jumonji lysine demethylase KDM2A regulation of methylated H3K36. Genes Dev. 28, 1758-71
Patchett, S., Lv, Z., Rut, W., Békés, M., Drag, M., Olsen, S. K., and Huang, T. T. (2021) A molecular sensor determines the ubiquitin substrate specificity of SARS-CoV-2 papain-like protease. Cell Rep. 36, 109754

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