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Larson, M. R., Rajashankar, K. R., Crowley, P. J., Kelly, C., Mitchell, T. J., L Brady, J., and Deivanayagam, C. (2011) Crystal structure of the C-terminal region of Streptococcus mutans antigen I/II and characterization of salivary agglutinin adherence domains. J Biol Chem. 286, 21657-66
Latorraca, N. R., Fastman, N. M., Venkatakrishnan, A. J., Frommer, W. B., Dror, R. O., and Feng, L. (2017) Mechanism of Substrate Translocation in an Alternating Access Transporter. Cell. 169, 96-107.e12
Lau, R. K., Ye, Q., Birkholz, E. A., Berg, K. R., Patel, L., Mathews, I. T., Watrous, J. D., Ego, K., Whiteley, A. T., Lowey, B., Mekalanos, J. J., Kranzusch, P. J., Jain, M., Pogliano, J., and Corbett, K. D. (2020) Structure and Mechanism of a Cyclic Trinucleotide-Activated Bacterial Endonuclease Mediating Bacteriophage Immunity. Mol Cell. 10.1016/j.molcel.2019.12.010
Lau, Y. - T. K., Baytshtok, V., Howard, T. A., Fiala, B. M., Johnson, J. L. M., Carter, L. P., Baker, D., Lima, C. D., and Bahl, C. D. (2018) Discovery and engineering of enhanced SUMO protease enzymes. J Biol Chem. 293, 13224-13233
Lau, S. - Y., Procko, E., and Gaudet, R. (2012) Distinct properties of Ca2+-calmodulin binding to N- and C-terminal regulatory regions of the TRPV1 channel. J Gen Physiol. 140, 541-55
Lavoie, H., Thevakumaran, N., Gavory, G., Li, J. J., Padeganeh, A., Guiral, S., Duchaine, J., Mao, D. Y. L., Bouvier, M., Sicheri, F., and Therrien, M. (2013) Inhibitors that stabilize a closed RAF kinase domain conformation induce dimerization. Nat Chem Biol. 9, 428-36
Lavoie, H., Sahmi, M., Maisonneuve, P., Marullo, S. A., Thevakumaran, N., Jin, T., Kurinov, I., Sicheri, F., and Therrien, M. (2018) MEK drives BRAF activation through allosteric control of KSR proteins. Nature. 10.1038/nature25478
Law, J. A., Du, J., Hale, C. J., Feng, S., Krajewski, K., Palanca, A. Marie S., Strahl, B. D., Patel, D. J., and Jacobsen, S. E. (2013) Polymerase IV occupancy at RNA-directed DNA methylation sites requires SHH1. Nature. 498, 385-9
Lazarus, M. B., Nam, Y., Jiang, J., Sliz, P., and Walker, S. (2011) Structure of human O-GlcNAc transferase and its complex with a peptide substrate. Nature. 469, 564-7
Le Thomas, A., Stuwe, E., Li, S., Du, J., Marinov, G., Rozhkov, N., Chen, Y. - C. Ariel, Luo, Y., Sachidanandam, R., Toth, K. Fejes, Patel, D., and Aravin, A. A. (2014) Transgenerationally inherited piRNAs trigger piRNA biogenesis by changing the chromatin of piRNA clusters and inducing precursor processing. Genes Dev. 28, 1667-80
Lee, S. - J., Ren, F., Zangerl-Plessl, E. - M., Heyman, S., Stary-Weinzinger, A., Yuan, P., and Nichols, C. G. (2016) Structural basis of control of inward rectifier Kir2 channel gating by bulk anionic phospholipids. J Gen Physiol. 148, 227-37
Lee, S. - A., Yang, K. Jian Zhang, Brun, P. - J., Silvaroli, J. A., Yuen, J. J., Shmarakov, I., Jiang, H., Feranil, J. B., Li, X., Lackey, A. I., Krężel, W., Leibel, R. L., Libien, J., Storch, J., Golczak, M., and Blaner, W. S. (2020) Retinol-binding protein 2 (RBP2) binds monoacylglycerols and modulates gut endocrine signaling and body weight. Sci Adv. 6, eaay8937
Lee, K., Zhong, X., Gu, S., Kruel, A. Magdalena, Dorner, M. B., Perry, K., Rummel, A., Dong, M., and Jin, R. (2014) Molecular basis for disruption of E-cadherin adhesion by botulinum neurotoxin A complex. Science. 344, 1405-10
Lee, J. K., Bosnakovski, D., Toso, E. A., Dinh, T., Banerjee, S., Bohl, T. E., Shi, K., Orellana, K., Kyba, M., and Aihara, H. (2018) Crystal Structure of the Double Homeodomain of DUX4 in Complex with DNA. Cell Rep. 25, 2955-2962.e3
Lee, S., and Verdine, G. L. (2009) Atomic substitution reveals the structural basis for substrate adenine recognition and removal by adenine DNA glycosylase. Proc Natl Acad Sci U S A. 106, 18497-502
Lee, K., Lam, K. - H., Kruel, A. Magdalena, Perry, K., Rummel, A., and Jin, R. (2014) High-resolution crystal structure of HA33 of botulinum neurotoxin type B progenitor toxin complex. Biochem Biophys Res Commun. 446, 568-73
Lee, S. - J., Sung, R. - J., and Verdine, G. L. (2019) Mechanism of DNA Lesion Homing and Recognition by the Uvr Nucleotide Excision Repair System. Research (Wash D C). 2019, 5641746
Lee, C., and Goldberg, J. (2010) Structure of coatomer cage proteins and the relationship among COPI, COPII, and clathrin vesicle coats. Cell. 142, 123-32
Lee, S., Bowman, B. R., Ueno, Y., Wang, S., and Verdine, G. L. (2008) Synthesis and structure of duplex DNA containing the genotoxic nucleobase lesion N7-methylguanine. J Am Chem Soc. 130, 11570-1
Lee, W. - G., Frey, K. M., Gallardo-Macias, R., Spasov, K. A., Chan, A. H., Anderson, K. S., and Jorgensen, W. L. (2015) Discovery and crystallography of bicyclic arylaminoazines as potent inhibitors of HIV-1 reverse transcriptase. Bioorg Med Chem Lett. 25, 4824-4827
Lee, S., Choi, J., Mohanty, J., Sousa, L. P., Tome, F., Pardon, E., Steyaert, J., Lemmon, M. A., Lax, I., and Schlessinger, J. (2018) Structures of β-klotho reveal a 'zip code'-like mechanism for endocrine FGF signalling.. Nature. 10.1038/nature25010
Lee, W. - G., Chan, A. H., Spasov, K. A., Anderson, K. S., and Jorgensen, W. L. (2016) Design, Conformation, and Crystallography of 2-Naphthyl Phenyl Ethers as Potent Anti-HIV Agents. ACS Med Chem Lett. 7, 1156-1160
Lee, K., Gu, S., Jin, L., Le, T. Tuc Nghi, Cheng, L. W., Strotmeier, J., Kruel, A. Magdalena, Yao, G., Perry, K., Rummel, A., and Jin, R. (2013) Structure of a bimodular botulinum neurotoxin complex provides insights into its oral toxicity. PLoS Pathog. 9, e1003690
Lee, S., Greenlee, E. B., Amick, J. R., Ligon, G. F., Lillquist, J. S., Natoli, E. J., Hadari, Y., Alvarado, D., and Schlessinger, J. (2015) Inhibition of ErbB3 by a monoclonal antibody that locks the extracellular domain in an inactive configuration. Proc Natl Acad Sci U S A. 112, 13225-30
Lee, K. Sing Steph, Liu, J. - Y., Wagner, K. M., Pakhomova, S., Dong, H., Morisseau, C., Fu, S. H., Yang, J., Wang, P., Ulu, A., Mate, C. A., Nguyen, L. V., Hwang, S. Hee, Edin, M. L., Mara, A. A., Wulff, H., Newcomer, M. E., Zeldin, D. C., and Hammock, B. D. (2014) Optimized inhibitors of soluble epoxide hydrolase improve in vitro target residence time and in vivo efficacy. J Med Chem. 57, 7016-30

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