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PMID: 10723068 Published · ppublish English Journal Article

RGS7 complex formation and colocalization with the Gbeta5 subunit in the adult rat brain and influence on Gbeta5gamma2-mediated PLCbeta signaling.

Journal of neuroscience research ·Vol. 60 ·No. 1 ·2000-04-01 ·Pages 58-64

Liang JJ, Chen HH, Jones PG, Khawaja XZ

Abstract

This study describes the colocalized distribution and dimeric complex formation between RGS7, a GTPase-activating protein for several heterotrimeric Galpha protein families, and the Gbeta5 subunit in the adult rat brain. Confocal dual immunofluorescence labeling studies indicated a broad regional specificity in the cellular coexpression between RGS7 and Gbeta5 within the cerebral cortical layers I and V-VI, hippocampal formation, caudate-putamen, medial habenula, most thalamic nuclei, and cerebellar molecular and granular layers. In all instances, Gbeta1-beta4 immunoreactivities exhibited no observable colocalization with RGS7, despite their widespread codistribution throughout similar neuronal networks. Coimmunoprecipitation studies confirmed the selective protein-protein interaction between RGS7 and Gbeta5 within brain regions that displayed immunohistochemical colocalization. The influence of RGS7 to modulate Gbeta5gamma2-mediated phosphatidyl inositol (PI) production was examined in COS-7-cotransfected cells. In the presence of Gbeta5gamma2 only, intracellular PI accumulation was increased by 25% above basal levels; addition of RGS7 produced no significant alteration in Gbeta5gamma2-mediated PI accumulation. A similar trend was exhibited when full-length RGS7 was substituted with an RGS7 construct lacking the Gbeta5-interacting region (G protein gamma-like domain; GGL domain) or with RGS4. In conclusion, RGS7/Gbeta5 dimers occurred within most brain regions in which both proteins were cellularly coexpressed. However, an influence of RGS7 on Gbeta5gamma2-mediated PLCbeta signaling activity was not apparent, athough this was in COS-7 cell transfection studies.

MeSH Terms
Animals Brain/metabolism COS Cells Fluorescent Antibody Technique GTP-Binding Protein beta Subunits GTP-Binding Proteins Heterotrimeric GTP-Binding Proteins/metabolism Isoenzymes/metabolism Microscopy, Confocal Phospholipase C beta RGS Proteins/metabolism Rats Rats, Wistar Signal Transduction/physiology Transfection Type C Phospholipases/metabolism
Chemicals
GTP-Binding Protein beta Subunits Gnb5 protein, rat Isoenzymes RGS Proteins Rgs7 protein, mouse Rgs7 protein, rat Type C Phospholipases Phospholipase C beta Plcb4 protein, mouse Plcb4 protein, rat GTP-Binding Proteins Heterotrimeric GTP-Binding Proteins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Liang J J
Neuroscience Department, Wyeth-Ayerst Research, Princeton, NJ 08543-8000, USA.
Chen H H
Jones P G
Khawaja X Z
Article Info
Journal
Journal of neuroscience research
Abbr.
J Neurosci Res
ISSN
0360-4012
Published
2000-04-01
Pages
58-64
Language
English
Region
United States
NLM ID
7600111
Subset
IM
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