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Huang, J., Dey, R., Wang, Y., Jakoncic, J., Kurinov, I., and Huang, X. - Y. (2018) Structural Insights into the Induced-fit Inhibition of Fascin by a Small-Molecule Inhibitor. J Mol Biol. 10.1016/j.jmb.2018.03.009
Huang, J., Makabe, K., Biancalana, M., Koide, A., and Koide, S. (2009) Structural basis for exquisite specificity of affinity clamps, synthetic binding proteins generated through directed domain-interface evolution. J Mol Biol. 392, 1221-31
Hubin, E. A., Fay, A., Xu, C., Bean, J. M., Saecker, R. M., Glickman, M. S., Darst, S. A., and Campbell, E. A. (2017) Structure and function of the mycobacterial transcription initiation complex with the essential regulator RbpA. Elife. 10.7554/eLife.22520
Hubin, E. A., Lilic, M., Darst, S. A., and Campbell, E. A. (2017) Structural insights into the mycobacteria transcription initiation complex from analysis of X-ray crystal structures. Nat Commun. 8, 16072
Hubin, E. A. (2016) Structural and functional studies of mycobacterial general transcription factors RbpA and CarD. Ph.D. thesis, The Rockefeller University, New York City, New York
Huff, S. (2016) Structure-guided Synthesis and Evaluation of Non-nucleoside Reversible, Competitive Inhibitors of Human Ribonucleotide Reductase as Anti-proliferative Agents. Ph.D. thesis, Case Western Reserve University, OhioLINK Electronic Theses and Dissertations Center
Hung, K. - W., Chang, Y. - W., Eng, E. T., Chen, J. - H., Chen, Y. - C., Sun, Y. - J., Hsiao, C. - D., Dong, G., Spasov, K. A., Unger, V. M., and Huang, T. - H. (2010) Structural fold, conservation and Fe(II) binding of the intracellular domain of prokaryote FeoB. J Struct Biol. 170, 501-12
Huo, Y., Nam, K. Hyun, Ding, F., Lee, H., Wu, L., Xiao, Y., M Farchione, D., Zhou, S., Rajashankar, K., Kurinov, I., Zhang, R., and Ke, A. (2014) Structures of CRISPR Cas3 offer mechanistic insights into Cascade-activated DNA unwinding and degradation. Nat Struct Mol Biol. 21, 771-7
J
Jacewicz, A., Dantuluri, S., and Shuman, S. (2022) Structures of RNA ligase RtcB in complexes with divalent cations and GTP. RNA. 10.1261/rna.079327.122
Jacewicz, A., Dantuluri, S., and Shuman, S. (2023) Structural basis for Tpt1-catalyzed 2'-PO transfer from RNA and NADP(H) to NAD. Proc Natl Acad Sci U S A. 120, e2312999120
Jacobitz, A. W., Wereszczynski, J., Yi, S. Wook, Amer, B. R., Huang, G. L., Nguyen, A. V., Sawaya, M. R., Jung, M. E., J McCammon, A., and Clubb, R. T. (2014) Structural and computational studies of the Staphylococcus aureus sortase B-substrate complex reveal a substrate-stabilized oxyanion hole. J Biol Chem. 289, 8891-902
Jain, R., Coloma, J., García-Sastre, A., and Aggarwal, A. K. (2016) Structure of the NS3 helicase from Zika virus. Nat Struct Mol Biol. 23, 752-4
Jenni, S., Goyal, Y., von Grotthuss, M., Shvartsman, S. Y., and Klein, D. E. (2015) Structural Basis of Neurohormone Perception by the Receptor Tyrosine Kinase Torso. Mol Cell. 60, 941-52
Jenni, S., and Harrison, S. C. (2018) Structure of the DASH/Dam1 complex shows its role at the yeast kinetochore-microtubule interface. Science. 360, 552-558
Jensen, J. L., Jernberg, B. D., Sinha, S., and Colbert, C. L. (2020) Structural basis of cell surface signaling by a conserved sigma regulator in Gram-negative bacteria. J Biol Chem. 10.1074/jbc.RA119.010697
Jensen, J. L., Indurthi, V. S. K., Neau, D. B., Vetter, S. W., and Colbert, C. L. (2015) Structural insights into the binding of the human receptor for advanced glycation end products (RAGE) by S100B, as revealed by an S100B-RAGE-derived peptide complex. Acta Crystallogr D Biol Crystallogr. 71, 1176-83
Jensen, J. L., Yamini, S., Rietsch, A., and Spiller, B. W. (2020) "The structure of the Type III secretion system export gate with CdsO, an ATPase lever arm". PLoS Pathog. 16, e1008923
Ji, X., Tang, C., Zhao, Q., Wang, W., and Xiong, Y. (2014) Structural basis of cellular dNTP regulation by SAMHD1. Proc Natl Acad Sci U S A. 111, E4305-14
Ji, T., Zhang, C., Zheng, L., Dunaway-Mariano, D., and Allen, K. N. (2018) Structural Basis of the Molecular Switch between Phosphatase and Mutase Functions of Human Phosphomannomutase 1 under Ischemic Conditions. Biochemistry. 57, 3480-3492
Jia, X., Weber, E., Tokarev, A., Lewinski, M., Rizk, M., Suarez, M., Guatelli, J., and Xiong, Y. (2014) Structural basis of HIV-1 Vpu-mediated BST2 antagonism via hijacking of the clathrin adaptor protein complex 1. Elife. 3, e02362
Jia, N., Xie, W., M de la Cruz, J., Eng, E. T., and Patel, D. J. (2020) Structure-function insights into the initial step of DNA integration by a CRISPR-Cas-Transposon complex. Cell Res. 10.1038/s41422-019-0272-2
Jia, X., Singh, R., Homann, S., Yang, H., Guatelli, J., and Xiong, Y. (2012) Structural basis of evasion of cellular adaptive immunity by HIV-1 Nef. Nat Struct Mol Biol. 19, 701-6
Jia, N., Jones, R., Sukenick, G., and Patel, D. J. (2019) Second Messenger cA Formation within the Composite Csm1 Palm Pocket of Type III-A CRISPR-Cas Csm Complex and Its Release Path. Mol Cell. 75, 933-943.e6
Jiang, J., Chan, H., Cash, D. D., Miracco, E. J., Loo, R. R. Ogorzale, Upton, H. E., Cascio, D., Johnson, R. O. 'Brien, Collins, K., Loo, J. A., Z Zhou, H., and Feigon, J. (2015) Structure of Tetrahymena telomerase reveals previously unknown subunits, functions, and interactions. Science. 350, aab4070

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