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PMID: 15266015 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Identification of a novel site within G protein alpha subunits important for specificity of receptor-G protein interaction.

Molecular pharmacology ·Vol. 66 ·No. 2 ·2004-08-00 ·Pages 250-9

Heydorn A, Ward RJ, Jorgensen R, Rosenkilde MM, Frimurer TM, Milligan G, Kostenis E

Abstract

Several domains of G protein alpha subunits are implicated in the control of receptor-G protein coupling specificity. Among these are the extreme N-and C-termini, the alpha4/beta6-loops, and the loop linking the N-terminal alpha-helix to the beta1-strand of the ras-like domain. In this study, we illustrate that single-point mutations of a highly conserved glycine residue within the linker I region of the Galpha(q) subunit confers upon the mutant Galpha(q) the ability to be activated by Galpha(i)- and Galpha(s) -coupled receptors, as evidenced by guanosine 5'-O-(3-[(35)S]thio)triphosphate binding and inositol phosphate turnover assays. The mutations did not affect expression of Galpha(q) proteins nor their ability to stimulate phospholipase Cbeta. It is noteworthy that both mutant and wild-type Galpha(q) proteins are indistinguishable in their ability to reconstitute a functional Gq-PLCbeta-calcium signaling pathway when cotransfected with the Galpha(q)-coupled neurokinin 1 or muscarinic M3 receptor into mouse embryonic fibroblasts derived from Galpha(q/11) knockout mice. On a three-dimensional model of the receptor-G protein complex, the highly conserved linker I region connecting the helical and the GTPase domain of the Galpha protein is inaccessible to the intracellular surface of the receptors. Our data indicate that receptor-G protein coupling specificity is not exclusively governed by direct receptor-G protein interaction and that it even bypasses the requirement of the extreme C terminus of Galpha, a well accepted receptor recognition domain, suggesting a novel allosteric mechanism for G protein-coupled receptor-G protein selectivity.

MeSH Terms
Animals Aspartic Acid/genetics COS Cells Enzyme Activation GTP-Binding Protein alpha Subunits, Gi-Go/metabolism GTP-Binding Protein alpha Subunits, Gq-G11/metabolism GTP-Binding Protein alpha Subunits, Gs/metabolism Glycine/genetics Guanosine 5'-O-(3-Thiotriphosphate)/metabolism Isoenzymes/metabolism Mice Models, Molecular Mutation Pertussis Toxin/pharmacology Phospholipase C beta Protein Structure, Secondary Receptors, CCR5/metabolism Receptors, G-Protein-Coupled/metabolism Sulfur Radioisotopes Transfection Type C Phospholipases/metabolism
Chemicals
Isoenzymes Receptors, CCR5 Receptors, G-Protein-Coupled Sulfur Radioisotopes Aspartic Acid Guanosine 5'-O-(3-Thiotriphosphate) Pertussis Toxin Type C Phospholipases Phospholipase C beta Plcb1 protein, mouse GTP-Binding Protein alpha Subunits, Gi-Go GTP-Binding Protein alpha Subunits, Gq-G11 GTP-Binding Protein alpha Subunits, Gs Glycine
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Heydorn Arne
Laboratory for Molecular Pharmacology, the Panum Institute, University of Copenhagen, Copenhagen, Denmark.
Ward Richard J
Jorgensen Rasmus
Rosenkilde Mette M
Frimurer Thomas M
Milligan Graeme
Kostenis Evi
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
0026-895X
Published
2004-08-00
Pages
250-9
Language
English
Region
United States
NLM ID
0035623
Subset
IM
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