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Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics

Allosteric modulation of G protein-coupled receptors (GPCRs) is a major paradigm in drug discovery. Despite decades of research, a molecular-level understanding of the general principles that govern the myriad pharmacological effects exerted by GPCR allosteric modulators remains limited. The M(4) mu...

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Autores principales: Vuckovic, Ziva, Wang, Jinan, Pham, Vi, Mobbs, Jesse I, Belousoff, Matthew J, Bhattarai, Apurba, Burger, Wessel AC, Thompson, Geoff, Yeasmin, Mahmuda, Nawaratne, Vindhya, Leach, Katie, van der Westhuizen, Emma T, Khajehali, Elham, Liang, Yi-Lynn, Glukhova, Alisa, Wootten, Denise, Lindsley, Craig W, Tobin, Andrew, Sexton, Patrick, Danev, Radostin, Valant, Celine, Miao, Yinglong, Christopoulos, Arthur, Thal, David M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10229135/
https://www.ncbi.nlm.nih.gov/pubmed/37248726
http://dx.doi.org/10.7554/eLife.83477
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author Vuckovic, Ziva
Wang, Jinan
Pham, Vi
Mobbs, Jesse I
Belousoff, Matthew J
Bhattarai, Apurba
Burger, Wessel AC
Thompson, Geoff
Yeasmin, Mahmuda
Nawaratne, Vindhya
Leach, Katie
van der Westhuizen, Emma T
Khajehali, Elham
Liang, Yi-Lynn
Glukhova, Alisa
Wootten, Denise
Lindsley, Craig W
Tobin, Andrew
Sexton, Patrick
Danev, Radostin
Valant, Celine
Miao, Yinglong
Christopoulos, Arthur
Thal, David M
author_facet Vuckovic, Ziva
Wang, Jinan
Pham, Vi
Mobbs, Jesse I
Belousoff, Matthew J
Bhattarai, Apurba
Burger, Wessel AC
Thompson, Geoff
Yeasmin, Mahmuda
Nawaratne, Vindhya
Leach, Katie
van der Westhuizen, Emma T
Khajehali, Elham
Liang, Yi-Lynn
Glukhova, Alisa
Wootten, Denise
Lindsley, Craig W
Tobin, Andrew
Sexton, Patrick
Danev, Radostin
Valant, Celine
Miao, Yinglong
Christopoulos, Arthur
Thal, David M
author_sort Vuckovic, Ziva
collection PubMed
description Allosteric modulation of G protein-coupled receptors (GPCRs) is a major paradigm in drug discovery. Despite decades of research, a molecular-level understanding of the general principles that govern the myriad pharmacological effects exerted by GPCR allosteric modulators remains limited. The M(4) muscarinic acetylcholine receptor (M(4) mAChR) is a validated and clinically relevant allosteric drug target for several major psychiatric and cognitive disorders. In this study, we rigorously quantified the affinity, efficacy, and magnitude of modulation of two different positive allosteric modulators, LY2033298 (LY298) and VU0467154 (VU154), combined with the endogenous agonist acetylcholine (ACh) or the high-affinity agonist iperoxo (Ipx), at the human M(4) mAChR. By determining the cryo-electron microscopy structures of the M(4) mAChR, bound to a cognate G(i1) protein and in complex with ACh, Ipx, LY298-Ipx, and VU154-Ipx, and applying molecular dynamics simulations, we determine key molecular mechanisms underlying allosteric pharmacology. In addition to delineating the contribution of spatially distinct binding sites on observed pharmacology, our findings also revealed a vital role for orthosteric and allosteric ligand–receptor–transducer complex stability, mediated by conformational dynamics between these sites, in the ultimate determination of affinity, efficacy, cooperativity, probe dependence, and species variability. There results provide a holistic framework for further GPCR mechanistic studies and can aid in the discovery and design of future allosteric drugs.
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spelling pubmed-102291352023-05-31 Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics Vuckovic, Ziva Wang, Jinan Pham, Vi Mobbs, Jesse I Belousoff, Matthew J Bhattarai, Apurba Burger, Wessel AC Thompson, Geoff Yeasmin, Mahmuda Nawaratne, Vindhya Leach, Katie van der Westhuizen, Emma T Khajehali, Elham Liang, Yi-Lynn Glukhova, Alisa Wootten, Denise Lindsley, Craig W Tobin, Andrew Sexton, Patrick Danev, Radostin Valant, Celine Miao, Yinglong Christopoulos, Arthur Thal, David M eLife Biochemistry and Chemical Biology Allosteric modulation of G protein-coupled receptors (GPCRs) is a major paradigm in drug discovery. Despite decades of research, a molecular-level understanding of the general principles that govern the myriad pharmacological effects exerted by GPCR allosteric modulators remains limited. The M(4) muscarinic acetylcholine receptor (M(4) mAChR) is a validated and clinically relevant allosteric drug target for several major psychiatric and cognitive disorders. In this study, we rigorously quantified the affinity, efficacy, and magnitude of modulation of two different positive allosteric modulators, LY2033298 (LY298) and VU0467154 (VU154), combined with the endogenous agonist acetylcholine (ACh) or the high-affinity agonist iperoxo (Ipx), at the human M(4) mAChR. By determining the cryo-electron microscopy structures of the M(4) mAChR, bound to a cognate G(i1) protein and in complex with ACh, Ipx, LY298-Ipx, and VU154-Ipx, and applying molecular dynamics simulations, we determine key molecular mechanisms underlying allosteric pharmacology. In addition to delineating the contribution of spatially distinct binding sites on observed pharmacology, our findings also revealed a vital role for orthosteric and allosteric ligand–receptor–transducer complex stability, mediated by conformational dynamics between these sites, in the ultimate determination of affinity, efficacy, cooperativity, probe dependence, and species variability. There results provide a holistic framework for further GPCR mechanistic studies and can aid in the discovery and design of future allosteric drugs. eLife Sciences Publications, Ltd 2023-05-30 /pmc/articles/PMC10229135/ /pubmed/37248726 http://dx.doi.org/10.7554/eLife.83477 Text en © 2023, Vuckovic, Wang, Pham et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Vuckovic, Ziva
Wang, Jinan
Pham, Vi
Mobbs, Jesse I
Belousoff, Matthew J
Bhattarai, Apurba
Burger, Wessel AC
Thompson, Geoff
Yeasmin, Mahmuda
Nawaratne, Vindhya
Leach, Katie
van der Westhuizen, Emma T
Khajehali, Elham
Liang, Yi-Lynn
Glukhova, Alisa
Wootten, Denise
Lindsley, Craig W
Tobin, Andrew
Sexton, Patrick
Danev, Radostin
Valant, Celine
Miao, Yinglong
Christopoulos, Arthur
Thal, David M
Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title_full Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title_fullStr Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title_full_unstemmed Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title_short Pharmacological hallmarks of allostery at the M4 muscarinic receptor elucidated through structure and dynamics
title_sort pharmacological hallmarks of allostery at the m4 muscarinic receptor elucidated through structure and dynamics
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10229135/
https://www.ncbi.nlm.nih.gov/pubmed/37248726
http://dx.doi.org/10.7554/eLife.83477
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