Literature DB >> 24047497

Efficacy as an intrinsic property of the M(2) muscarinic receptor in its tetrameric state.

Dar'ya S Redka1, Heiko Heerklotz, James W Wells.   

Abstract

Muscarinic and other G protein-coupled receptors exhibit an agonist-specific heterogeneity that tracks efficacy and commonly is attributed to an effect of the G protein on an otherwise homogeneous population of sites. To examine this notion, M2 muscarinic receptors were purified from Sf9 cells as monomers devoid of G protein and reconstituted as tetramers in phospholipid vesicles. In assays with N-[(3)H]methylscopolamine, seven agonists revealed a dispersion of affinities indicative of two or more classes of sites. Unlabeled N-methylscopolamine and the antagonist quinuclidinylbenzilate recognized one class of sites; atropine recognized two classes with a preference that was the opposite of that of agonists, as indicated by the effects of N-ethylmaleimide. The data were inconsistent with an explicit model of constitutive asymmetry within a tetramer, and the fit improved markedly upon the introduction of cooperative interactions (P < 0.00001). Purified monomers appeared to be homogeneous or nearly so to all ligands except the partial agonists pilocarpine and McN-A-343, where heterogeneity emerged from intramolecular cooperativity between the orthosteric site and an allosteric site. The breadth of each dispersion was quantified empirically as the area between the fitted curve for two classes of sites and the theoretical curve for a single class of lower affinity, which approximates the expected effect of GTP if a G protein were present. The areas measured for 10 ligands at reconstituted tetramers correlated with similar measures of heterogeneity and with intrinsic activities reported previously for binding and response in natural membranes (P ≤ 0.00002). The data suggest that the GTP-sensitive heterogeneity typically revealed by agonists at M2 receptors is intrinsic to the receptor in its tetrameric state. It exists independently of the G protein, and it appears to arise at least in part from cooperativity between linked orthosteric sites.

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Year:  2013        PMID: 24047497     DOI: 10.1021/bi4003869

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  18 in total

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Authors:  Yuchong Li; Rabindra V Shivnaraine; Fei Huang; James W Wells; Claudiu C Gradinaru
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2.  Coupling of g proteins to reconstituted monomers and tetramers of the M2 muscarinic receptor.

Authors:  Dar'ya S Redka; Takefumi Morizumi; Gwendolynne Elmslie; Pranavan Paranthaman; Rabindra V Shivnaraine; John Ellis; Oliver P Ernst; James W Wells
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4.  Rebuttal from Nevin A. Lambert and Jonathan A. Javitch.

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Journal:  J Physiol       Date:  2014-06-15       Impact factor: 5.182

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7.  Graded activation and free energy landscapes of a muscarinic G-protein-coupled receptor.

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Authors:  Rajashri Sridharan; Sara M Connelly; Fred Naider; Mark E Dumont
Journal:  J Biol Chem       Date:  2016-09-19       Impact factor: 5.157

Review 9.  The GPCR heterotetramer: challenging classical pharmacology.

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10.  Quaternary structures of opsin in live cells revealed by FRET spectrometry.

Authors:  Ashish K Mishra; Megan Gragg; Michael R Stoneman; Gabriel Biener; Julie A Oliver; Przemyslaw Miszta; Slawomir Filipek; Valerică Raicu; Paul S-H Park
Journal:  Biochem J       Date:  2016-09-13       Impact factor: 3.857

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