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磷酸化在激动剂促进的β2 - 肾上腺素能受体隔离中的作用。βARK1对隔离缺陷型突变受体的挽救作用。

Role of phosphorylation in agonist-promoted beta 2-adrenergic receptor sequestration. Rescue of a sequestration-defective mutant receptor by beta ARK1.

作者信息

Ferguson S S, Ménard L, Barak L S, Koch W J, Colapietro A M, Caron M G

机构信息

Howard Hughes Medical Institute Laboratories, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 1995 Oct 20;270(42):24782-9. doi: 10.1074/jbc.270.42.24782.

Abstract

The beta 2-adrenergic receptor (beta 2AR) belongs to the large family of G protein-coupled receptors. Mutation of tyrosine residue 326 to an alanine resulted in a beta 2AR mutant (beta 2AR-Y326A) that was defective in its ability to sequester and was less well coupled to adenylyl cyclase than the wild-type beta 2AR. However, this mutant receptor not only desensitized in response to agonist stimulation but down-regulated normally. In an attempt to understand the basis for the properties of this mutant, we have examined the ability of this regulation-defective mutant to undergo agonist-mediated phosphorylation. When expressed in 293 cells, the maximal response for phosphorylation of the beta 2AR-Y326A mutant was impaired by 75%. Further characterization of this phosphorylation, using either forskolin stimulation or phosphorylation site-deficient beta 2AR-Y326A mutants, demonstrated that the beta 2AR-Y326A mutant can be phosphorylated by cAMP-dependent protein kinase (PKA) but does not serve as a substrate for the beta-adrenergic receptor kinase 1 (beta ARK1). However, overexpression of beta ARK1 led to the agonist-dependent phosphorylation of the beta 2AR-Y326A mutant and rescue of its sequestration. beta ARK1-mediated rescue of beta 2AR-Y326A sequestration could be prevented by mutating putative beta ARK phosphorylation sites, but not PKA phosphorylation sites. In addition, both sequestration and phosphorylation of the wild-type beta 2AR could be attenuated by overexpressing a dominant-negative mutant of beta ARK1 (C20 beta ARK1-K220M). These findings implicate a role for beta ARK1-mediated phosphorylation in facilitating wild-type beta 2AR sequestration.

摘要

β2肾上腺素能受体(β2AR)属于G蛋白偶联受体大家族。酪氨酸残基326突变为丙氨酸导致了一种β2AR突变体(β2AR - Y326A),其在隔离能力方面存在缺陷,并且与野生型β2AR相比,与腺苷酸环化酶的偶联效果较差。然而,这种突变受体不仅对激动剂刺激产生脱敏反应,而且正常下调。为了理解这种突变体特性的基础,我们研究了这种调节缺陷型突变体进行激动剂介导的磷酸化的能力。当在293细胞中表达时,β2AR - Y326A突变体磷酸化的最大反应受损75%。使用福斯可林刺激或磷酸化位点缺陷型β2AR - Y326A突变体对这种磷酸化进行进一步表征,结果表明β2AR - Y326A突变体可被cAMP依赖性蛋白激酶(PKA)磷酸化,但不作为β肾上腺素能受体激酶1(βARK1)的底物。然而,βARK1的过表达导致β2AR - Y326A突变体的激动剂依赖性磷酸化及其隔离的恢复。通过突变假定的βARK磷酸化位点而非PKA磷酸化位点,可以阻止βARK1介导的β2AR - Y326A隔离的恢复。此外,野生型β2AR的隔离和磷酸化均可通过过表达βARK1的显性负性突变体(C20βARK1 - K220M)而减弱。这些发现表明βARK1介导的磷酸化在促进野生型β2AR隔离中起作用。

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