Allostery of atypical modulators at oligomeric G protein-coupled receptors

被引:0
作者
Rabindra V. Shivnaraine
Brendan Kelly
Gwendolynne Elmslie
Xi-Ping Huang
Yue John Dong
Margaret Seidenberg
James W. Wells
John Ellis
机构
[1] University of Toronto,Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy
[2] Penn State University College of Medicine,Departments of Psychiatry and Pharmacology, Hershey Medical Center
[3] Stanford University,Departments of Computer Science, Molecular and Cellular Physiology, and Structural Biology, and Institute for Computational and Mathematical Engineering
[4] Penn State University College of Medicine,Department of Psychiatry H073
[5] Stanford University School of Medicine,Department of Molecular and Cellular Physiology
[6] University of North Carolina at Chapel Hill,Department of Pharmacology, The National Institute of Mental Health Psychoactive Drug Screening Program (NIMH PDSP)
来源
Scientific Reports | / 11卷
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摘要
Many G protein-coupled receptors (GPCRs) are therapeutic targets, with most drugs acting at the orthosteric site. Some GPCRs also possess allosteric sites, which have become a focus of drug discovery. In the M2 muscarinic receptor, allosteric modulators regulate the binding and functional effects of orthosteric ligands through a mix of conformational changes, steric hindrance and electrostatic repulsion transmitted within and between the constituent protomers of an oligomer. Tacrine has been called an atypical modulator because it exhibits positive cooperativity, as revealed by Hill coefficients greater than 1 in its negative allosteric effect on binding and response. Radioligand binding and molecular dynamics simulations were used to probe the mechanism of that modulation in monomers and oligomers of wild-type and mutant M2 receptors. Tacrine is not atypical at monomers, which indicates that its atypical effects are a property of the receptor in its oligomeric state. These results illustrate that oligomerization of the M2 receptor has functional consequences.
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