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GPCR kinase knockout cells reveal the impact of individual GRKs on arrestin binding and GPCR regulation.


ABSTRACT: G protein-coupled receptors (GPCRs) activate G proteins and undergo a complex regulation by interaction with GPCR kinases (GRKs) and the formation of receptor-arrestin complexes. However, the impact of individual GRKs on arrestin binding is not clear. We report the creation of eleven combinatorial HEK293 knockout cell clones lacking GRK2/3/5/6, including single, double, triple and the quadruple GRK knockout. Analysis of β-arrestin1/2 interactions for twelve GPCRs in our GRK knockout cells enables the differentiation of two main receptor subsets: GRK2/3-regulated and GRK2/3/5/6-regulated receptors. Furthermore, we identify GPCRs that interact with β-arrestins via the overexpression of specific GRKs even in the absence of agonists. Finally, using GRK knockout cells, PKC inhibitors and β-arrestin mutants, we present evidence for differential receptor-β-arrestin1/2 complex configurations mediated by selective engagement of kinases. We anticipate our GRK knockout platform to facilitate the elucidation of previously unappreciated details of GRK-specific GPCR regulation and β-arrestin complex formation.

SUBMITTER: Drube J 

PROVIDER: S-EPMC8795447 | biostudies-literature | 2022 Jan

REPOSITORIES: biostudies-literature

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GPCR kinase knockout cells reveal the impact of individual GRKs on arrestin binding and GPCR regulation.

Drube J J   Haider R S RS   Matthees E S F ESF   Reichel M M   Zeiner J J   Fritzwanker S S   Ziegler C C   Barz S S   Klement L L   Filor J J   Weitzel V V   Kliewer A A   Miess-Tanneberg E E   Kostenis E E   Schulz S S   Hoffmann C C  

Nature communications 20220127 1


G protein-coupled receptors (GPCRs) activate G proteins and undergo a complex regulation by interaction with GPCR kinases (GRKs) and the formation of receptor-arrestin complexes. However, the impact of individual GRKs on arrestin binding is not clear. We report the creation of eleven combinatorial HEK293 knockout cell clones lacking GRK2/3/5/6, including single, double, triple and the quadruple GRK knockout. Analysis of β-arrestin1/2 interactions for twelve GPCRs in our GRK knockout cells enable  ...[more]

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