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PMID: 15827571 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

The RGSZ2 protein exists in a complex with mu-opioid receptors and regulates the desensitizing capacity of Gz proteins.

Garzón J, Rodríguez-Muñoz M, López-Fando A, Sánchez-Blázquez P

Abstract

The regulator of G-protein signaling RGS17(Z2) is a member of the RGS-Rz subfamily of GTPase-activating proteins (GAP) that efficiently deactivate GalphazGTP subunits. We have found that in the central nervous system (CNS), the levels of RGSZ2 mRNA and protein are elevated in the hypothalamus, midbrain, and pons-medulla, and that RGSZ2 is glycosylated in synaptosomal membranes isolated from CNS tissue. In analyzing the function of RGSZ2 in the CNS, we found that when the expression of RGSZ2 was impaired, the antinociceptive response to morphine and [D-Ala2, N-MePhe4, Gly-ol5]-enkephalin (DAMGO) augmented. This potentiation involved mu-opioid receptors and increased tolerance to further doses of these agonists administered 24 h later. High doses of morphine promoted agonist desensitization even within the analgesia time-course, a phenomenon that appears to be related to the great capacity of morphine to activate Gz proteins. In contrast, the knockdown of RGSZ2 proteins did not affect the activity of delta receptor agonists, [D-Pen2,5]-enkephalin (DPDPE), and [D-Ala2] deltorphin II. In membranes from periaqueductal gray matter (PAG), both RGSZ2 and the related RGS20(Z1) co-precipitated with mu-opioid receptors. While a morphine challenge reduced the association of Gi/o/z with mu receptors, it increased their association with the RGSZ2 and RGSZ1 proteins. However, only Galphaz subunits co-precipitated with RGSZ2. Doses of morphine that produced acute tolerance maintained the association of Galpha subunits with RGSZ proteins even after the analgesic effects had ceased. These results indicate that both RGSZ1 and RGSZ2 proteins influence mu receptor signaling by sequestering Galpha subunits, therefore behaving as effector antagonists.

MeSH Terms
Analgesics, Opioid/pharmacology Analysis of Variance Animals Behavior, Animal Blotting, Northern Blotting, Western/methods Central Nervous System/anatomy & histology,drug effects,metabolism Dose-Response Relationship, Drug Drug Interactions Drug Tolerance GTP-Binding Protein alpha Subunits/metabolism GTP-Binding Proteins/metabolism Gene Expression Regulation/drug effects,physiology Glycosylation/drug effects Immunoprecipitation/methods Mice Mice, Knockout Models, Biological Morphine/pharmacology Narcotics/pharmacology Oligodeoxyribonucleotides, Antisense/pharmacology Pain Measurement/drug effects RGS Proteins/chemistry,genetics,immunology,metabolism RNA, Messenger/biosynthesis Receptors, Opioid, mu/metabolism Reverse Transcriptase Polymerase Chain Reaction/methods Synaptosomes/drug effects,metabolism Time Factors
Chemicals
Analgesics, Opioid GTP-Binding Protein alpha Subunits Gnaz protein, mouse Narcotics Oligodeoxyribonucleotides, Antisense RGS Proteins RNA, Messenger Receptors, Opioid, mu Morphine GTP-Binding Proteins
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Garzón Javier
Neurofarmacología, Instituto de Neurobiología Santiago Ramón y Cajal, CSIC, Madrid, Spain. jgarzon@cajal.csic.es
Rodríguez-Muñoz María
López-Fando Almudena
Sánchez-Blázquez Pilar
Article Info
Journal
Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology
Abbr.
Neuropsychopharmacology
ISSN
0893-133X
Published
2005-09-00
Pages
1632-48
Language
English
Region
England
NLM ID
8904907
Subset
IM
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