Christopher Reynolds
Christopher Reynolds
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Cited by
Cited by
Studies on the mechanism of hypoxic selectivity in copper bis (thiosemicarbazone) radiopharmaceuticals
RI Maurer, PJ Blower, JR Dilworth, CA Reynolds, Y Zheng, GED Mullen
Journal of medicinal chemistry 45 (7), 1420-1431, 2002
Cryo-EM structure of the active, Gs-protein complexed, human CGRP receptor
YL Liang, M Khoshouei, G Deganutti, A Glukhova, C Koole, TS Peat, ...
Nature 561 (7724), 492-497, 2018
Atomic charges for variable molecular conformations
CA Reynolds, JW Essex, WG Richards
Journal of the American Chemical Society 114 (23), 9075-9079, 1992
Dimerization and domain swapping in G-protein-coupled receptors: a computational study
PR Gouldson, C Higgs, RE Smith, MK Dean, GV Gkoutos, CA Reynolds
Neuropsychopharmacology 23 (4), S60-S77, 2000
Semiempirical AM1 electrostatic potentials and AM1 electrostatic potential derived charges: A comparison with ab initio values
GG Ferenczy, CA Reynolds, WG Richards
Journal of computational chemistry 11 (2), 159-169, 1990
Dimerization of G-protein-coupled receptors
MK Dean, C Higgs, RE Smith, RP Bywater, CR Snell, PD Scott, ...
Journal of medicinal chemistry 44 (26), 4595-4614, 2001
Domain swapping in G-protein coupled receptor dimers.
PR Gouldson, CR Snell, RP Bywater, C Higgs, CA Reynolds
Protein engineering 11 (12), 1181-1193, 1998
The extracellular surface of the GLP-1 receptor is a molecular trigger for biased agonism
D Wootten, CA Reynolds, KJ Smith, JC Mobarec, C Koole, EE Savage, ...
Cell 165 (7), 1632-1643, 2016
Towards new transition metal-based hypoxic selective agents for therapy and imaging
PJ Blower, JR Dilworth, RI Maurer, GD Mullen, CA Reynolds, Y Zheng
Journal of inorganic biochemistry 85 (1), 15-22, 2001
Free energy calculations in molecular biophysics
CA Reynolds, PM King, WG Richards
Molecular Physics 76 (2), 251-275, 1992
Computed redox potentials and the design of bioreductive agents
CA Reynolds, PM King, WG Richards
Nature 334 (6177), 80-82, 1988
Toward the active conformations of rhodopsin and the β2‐adrenergic receptor
PR Gouldson, NJ Kidley, RP Bywater, G Psaroudakis, HD Brooks, C Diaz, ...
Proteins: Structure, Function, and Bioinformatics 56 (1), 67-84, 2004
A New Approach to Docking in the β2-Adrenergic Receptor That Exploits the Domain Structure of G-Protein-Coupled Receptors
PR Gouldson, CR Snell, CA Reynolds
Journal of medicinal chemistry 40 (24), 3871-3886, 1997
Activation of the GLP-1 receptor by a non-peptidic agonist
P Zhao, YL Liang, MJ Belousoff, G Deganutti, MM Fletcher, FS Willard, ...
Nature 577 (7790), 432-436, 2020
Theoretical determination of partition coefficients
JW Essex, CA Reynolds, WG Richards
Journal of the American Chemical Society 114 (10), 3634-3639, 1992
Theoretical electrode potentials and conformational energies of benzoquinones and naphthoquinones in aqueous solution
CA Reynolds
Journal of the American Chemical Society 112 (21), 7545-7551, 1990
Receptor activity-modifying protein-directed G protein signaling specificity for the calcitonin gene-related peptide family of receptors
C Weston, I Winfield, M Harris, R Hodgson, A Shah, SJ Dowell, ...
Journal of Biological Chemistry 291 (42), 21925-21944, 2016
Do plants contain g protein-coupled receptors?
B Taddese, GJG Upton, GR Bailey, SRD Jordan, NY Abdulla, PJ Reeves, ...
Plant physiology 164 (1), 287-307, 2014
Criteria for confirming sequence periodicity identified by Fourier transform analysis: application to GCR2, a candidate plant GPCR?
CJR Illingworth, KE Parkes, CR Snell, PM Mullineaux, CA Reynolds
Biophysical chemistry 133 (1-3), 28-35, 2008
Bioinformatics and molecular modelling approaches to GPCR oligomerization
LM Simpson, B Taddese, ID Wall, CA Reynolds
Current opinion in pharmacology 10 (1), 30-37, 2010
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