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β-Arrestin2 directly or through GRK2 inhibits PKCβII activation in a ubiquitination-dependent manner.

Authors :
Zhang, Xiaohan
Zheng, Mei
Sun, Ningning
Kim, Kyeong-Man
Source :
BBA - Molecular Cell Research. Jan2018, Vol. 1865 Issue 1, p142-157. 16p.
Publication Year :
2018

Abstract

The GRK/β-arrestin and PKC/PKA mediate the homologous and heterologous regulation of G protein-coupled receptors (GPCRs), respectively. Interaction between the two pathways is one of the most important issues in understanding the regulation of GPCRs. The present study investigated the regulatory effect of GRK2 and β-arrestins on PKC activation. The roles of GRK2 and β-arrestins in the functional regulation of PKC were assessed by determining their influence on PKC autophosphorylation and intracellular translocation. Radioligand binding assay was utilized to characterize intracellular trafficking of dopamine D 2 R, D 3 R, and β 2 adrenergic receptor (β 2 AR). The subdomains involved in the mutual interactions among GRK2, β-arrestin2, and PKCβII were determined by in vitro binding assay. Various point mutants of key regulatory players were combined with knockdown cells of GRK2, β-arrestins, and Mdm2 to functionally correlate the biochemical changes with functional outcomes. GRK2 and β-arrestin2 mutually inhibited the PKCβII autophosphorylation, a hallmark of PKCβII activation. β-Arrestin2 ubiquitination was required for the inhibitory activities of GRK2 as well as β-arrestin2. Furthermore, GRK2 facilitated β-arrestin2 ubiquitination, thus to enhance the inhibitory actions of β-arrestin2 on PKCβII activity. Aforementioned processes were also involved in the GRK2/β-arrestin2-mediated inhibition of the D 2 R, D 3 R, and β 2 AR endocytosis. The present study provides new insights into the intricate interactions between the homologous and heterologous GPCR regulation pathways. In addition, a novel regulatory role of GRK2 was proposed for the ubiquitination of β-arrestin in the context of the PKC-mediated heterologous regulation of GPCRs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01674889
Volume :
1865
Issue :
1
Database :
Academic Search Index
Journal :
BBA - Molecular Cell Research
Publication Type :
Academic Journal
Accession number :
126294074
Full Text :
https://doi.org/10.1016/j.bbamcr.2017.10.009