Christopher L. McClendon, Ph.D.
Institution:
University of California, San Francisco, San Francisco, CAArea:
molecular recognitionGoogle:
"Christopher McClendon"Mean distance: 9.91 | S | N | B | C | P |
Parents
Sign in to add mentorJames A. Wells | grad student | 2011 | UCSF | |
(Correlated Motions and Allostery.) |
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Publications
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Schmidt D, Boehm M, McClendon CL, et al. (2019) Cosolvent-enhanced Sampling and Unbiased Identification of Cryptic Pockets Suitable for Structure-based Drug Design. Journal of Chemical Theory and Computation |
Pfleger C, Minges A, Boehm M, et al. (2017) Ensemble- and rigidity theory-based perturbation approach to analyze dynamic allostery. Journal of Chemical Theory and Computation |
Kim J, Ahuja LG, Chao FA, et al. (2017) A dynamic hydrophobic core orchestrates allostery in protein kinases. Science Advances. 3: e1600663 |
Ahuja LG, Kornev AP, McClendon CL, et al. (2017) Mutation of a kinase allosteric node uncouples dynamics linked to phosphotransfer. Proceedings of the National Academy of Sciences of the United States of America |
Meharena HS, Fan X, Ahuja LG, et al. (2016) Decoding the Interactions Regulating the Active State Mechanics of Eukaryotic Protein Kinases. Plos Biology. 14: e2000127 |
Meng H, McClendon CL, Dai Z, et al. (2015) Discovery of Novel 15-Lipoxygenase Activators To Shift the Human Arachidonic Acid Metabolic Network toward Inflammation Resolution. Journal of Medicinal Chemistry |
Hasnain S, McClendon CL, Tremont Hsu M, et al. (2015) A Computational Model for E. coli Cytoplasm: Diffusion and Hydrodynamics Biophysical Journal. 108: 116a-117a |
Srivastava AK, McDonald LR, Cembran A, et al. (2014) Synchronous opening and closing motions are essential for cAMP-dependent protein kinase A signaling. Structure (London, England : 1993). 22: 1735-43 |
McClendon CL, Kornev AP, Gilson MK, et al. (2014) Dynamic architecture of a protein kinase. Proceedings of the National Academy of Sciences of the United States of America. 111: E4623-31 |
Hasnain S, McClendon CL, Hsu MT, et al. (2014) A new coarse-grained model for E. coli cytoplasm: accurate calculation of the diffusion coefficient of proteins and observation of anomalous diffusion. Plos One. 9: e106466 |