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Nowak, R. P., DeAngelo, S. L., Buckley, D., He, Z., Donovan, K. A., An, J., Safaee, N., Jedrychowski, M. P., Ponthier, C. M., Ishoey, M., Zhang, T., Mancias, J. D., Gray, N. S., Bradner, J. E., and Fischer, E. S. (2018) Plasticity in binding confers selectivity in ligand-induced protein degradation. Nat Chem Biol. 10.1038/s41589-018-0055-y
Novikova, I. V., Sharma, N., Moser, T., Sontag, R., Liu, Y., Collazo, M. J., Cascio, D., Shokuhfar, T., Hellmann, H., Knoblauch, M., and Evans, J. E. (2018) Protein structural biology using cell-free platform from wheat germ. Adv Struct Chem Imaging. 4, 13
Nomura, Y., Montemayor, E. J., Virta, J. M., Hayes, S. M., and Butcher, S. E. (2019) Structural basis for the evolution of cyclic phosphodiesterase activity in the U6 snRNA exoribonuclease Usb1. Nucleic Acids Res. 10.1093/nar/gkz1177
Nomura, Y., Roston, D., Montemayor, E. J., Cui, Q., and Butcher, S. E. (2018) Structural and mechanistic basis for preferential deadenylation of U6 snRNA by Usb1. Nucleic Acids Res. 10.1093/nar/gky812
Noh, K. - M., Wang, H., Kim, H. R., Wenderski, W., Fang, F., Li, C. H., Dewell, S., Hughes, S. H., Melnick, A. M., Patel, D. J., Li, H., and C Allis, D. (2015) Engineering of a Histone-Recognition Domain in Dnmt3a Alters the Epigenetic Landscape and Phenotypic Features of Mouse ESCs. Mol Cell. 59, 89-103
Noey, E. L., Tibrewal, N., Jiménez-Osés, G., Osuna, S., Park, J., Bond, C. M., Cascio, D., Liang, J., Zhang, X., Huisman, G. W., Tang, Y., and Houk, K. N. (2015) Origins of stereoselectivity in evolved ketoreductases. Proc Natl Acad Sci U S A. 112, E7065-72
Nocula-Lugowska, M., Lugowski, M., Salgia, R., and Kossiakoff, A. A. (2015) Engineering Synthetic Antibody Inhibitors Specific for LD2 or LD4 Motifs of Paxillin. J Mol Biol. 427, 2532-2547
Nithianantham, S., McNally, F. J., and Al-Bassam, J. (2018) Structural Basis for Disassembly of Katanin Heterododecamers. J Biol Chem. 10.1074/jbc.RA117.001215
Nithianantham, S., Cook, B. D., Beans, M., Guo, F., Chang, F., and Al-Bassam, J. (2018) Structural basis of tubulin recruitment and assembly by microtubule polymerases with Tumor Overexpressed Gene (TOG) domain arrays. Elife. 10.7554/eLife.38922
Nicoludis, J. M., Green, A. G., Walujkar, S., May, E. J., Sotomayor, M., Marks, D. S., and Gaudet, R. (2019) Interaction specificity of clustered protocadherins inferred from sequence covariation and structural analysis. Proc Natl Acad Sci U S A. 116, 17825-17830
Nicoludis, J. M., Lau, S. - Y., Schärfe, C. P. I., Marks, D. S., Weihofen, W. A., and Gaudet, R. (2015) Structure and Sequence Analyses of Clustered Protocadherins Reveal Antiparallel Interactions that Mediate Homophilic Specificity. Structure. 23, 2087-98
Nicoludis, J. M., Vogt, B. E., Green, A. G., Schärfe, C. Pi, Marks, D. S., and Gaudet, R. (2016) Antiparallel protocadherin homodimers use distinct affinity- and specificity-mediating regions in cadherin repeats 1-4. Elife. 10.7554/eLife.18449
Ni, S., McGookey, M. E., Tinch, S. L., Jones, A. N., Jayaraman, S., Tong, L., and Kennedy, M. A. (2011) The 1.7 Å resolution structure of At2g44920, a pentapeptide-repeat protein in the thylakoid lumen of Arabidopsis thaliana.. Acta Crystallogr Sect F Struct Biol Cryst Commun. 67, 1480-4
Nguyen, J. B., Pool, C. D., Wong, C. Y. B., Treger, R. S., Williams, D. L., Cappello, M., Lea, W. A., Simeonov, A., Vermeire, J. J., and Modis, Y. (2013) Peroxiredoxin-1 from the human hookworm Ancylostoma ceylanicum forms a stable oxidized decamer and is covalently inhibited by conoidin A. Chem Biol. 20, 991-1001
Nguyen, H. An, Sunita, S., and Dunham, C. M. (2020) Disruption of evolutionarily correlated tRNA elements impairs accurate decoding. Proc Natl Acad Sci U S A. 117, 16333-16338
Nguyen, H. An, Hoffer, E. D., and Dunham, C. M. (2019) Importance of tRNA anticodon loop modification and a conserved, noncanonical anticodon stem pairing in tRNA for decoding. J Biol Chem. 10.1074/jbc.RA119.007410
Nguyen, L. A., Wang, J., and Steitz, T. A. (2017) Crystal structure of Pistol, a class of self-cleaving ribozyme. Proc Natl Acad Sci U S A. 114, 1021-1026
Nguyen, T., Lee, S., Yang, Y. - A., Ahn, C., Sim, J. Hyun, Kei, T. G., Barnard, K. N., Yu, H., Millano, S. K., Chen, X., Parrish, C. R., and Song, J. (2020) The role of 9-O-acetylated glycan receptor moieties in the typhoid toxin binding and intoxication. PLoS Pathog. 16, e1008336
Ngo, J. Chi Ki, Huang, M., Roth, D. A., Furie, B. C., and Furie, B. (2008) Crystal structure of human factor VIII: implications for the formation of the factor IXa-factor VIIIa complex. Structure. 16, 597-606
Newton, A. S., Deiana, L., Puleo, D. E., Cisneros, J. A., Cutrona, K. J., Schlessinger, J., and Jorgensen, W. L. (2017) JAK2 JH2 Fluorescence Polarization Assay and Crystal Structures for Complexes with Three Small Molecules. ACS Med Chem Lett. 8, 614-617
Neumann, W., Xu, S., Sárosi, M. B., Scholz, M. S., Crews, B. C., Ghebreselasie, K., Banerjee, S., Marnett, L. J., and Hey-Hawkins, E. (2016) nido-Dicarbaborate Induces Potent and Selective Inhibition of Cyclooxygenase-2. ChemMedChem. 11, 175-8
Nelson, A. C., Turbyville, T. J., Dharmaiah, S., Rigby, M., Yang, R., Wang, T. - Y., Columbus, J., Stephens, R., Taylor, T., Sciacca, D., Onsongo, G., Sarver, A., Subramanian, S., Nissley, D. V., Simanshu, D. K., and Lou, E. (2020) internal tandem duplication disrupts GTPase-activating protein (GAP) binding to activate oncogenic signaling. J Biol Chem. 10.1074/jbc.RA119.011080
Nelersa, C. M., Schmier, B. J., and Malhotra, A. (2011) Purification and crystallization of Bacillus subtilis NrnA, a novel enzyme involved in nanoRNA degradation. Acta Crystallogr Sect F Struct Biol Cryst Commun. 67, 1235-8
Neau, D. (2014) Recent Developments at NE-CAT, a Macromolecular Crystallography Synchrotron Facility. Indo-US International Conference/Workshop on Recent Advances in Structural Biology and Drug Discovery, October 9-11, 2014
Neau, D. B., Bender, G., Boeglin, W. E., Bartlett, S. G., Brash, A. R., and Newcomer, M. E. (2014) Crystal structure of a lipoxygenase in complex with substrate: the arachidonic acid-binding site of 8R-lipoxygenase. J Biol Chem. 289, 31905-13

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