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β-Arrestin-mediated activation of MAPK by inverse agonists reveals distinct active conformations for G protein-coupled receptors

机译:β-抑制蛋白介导的反向激动剂激活MAPK揭示了G蛋白偶联受体的独特活性构象

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摘要

It is becoming increasingly clear that signaling via G protein-coupled receptors is a diverse phenomenon involving receptor interaction with a variety of signaling partners. Despite this diversity, receptor ligands are commonly classified only according to their ability to modify G protein-dependent signaling. Here we show that β2AR ligands like ICI118551 and propranolol, which are inverse agonists for Gs-stimulated adenylyl cyclase, induce partial agonist responses for the mitogen-activated protein kinases extracellular signal-regulated kinase (ERK) 1/2 thus behaving as dual efficacy ligands. ERK1/2 activation by dual efficacy ligands was not affected by ADP-ribosylation of Gαi and could be observed in S49-cyc– cells lacking Gαs indicating that, unlike the conventional agonist isoproterenol, these drugs induce ERK1/2 activation in a Gs/i-independent manner. In contrast, this activation was inhibited by a dominant negative mutant of β-arrestin and was abolished in mouse embryonic fibroblasts lacking β-arrestin 1 and 2. The role of β-arrestin was further confirmed by showing that transfection of β-arrestin 2 in these knockout cells restored ICI118551 promoted ERK1/2 activation. ICI118551 and propranolol also promoted β-arrestin recruitment to the receptor. Taken together, these observations suggest that β-arrestin recruitment is not an exclusive property of agonists, and that ligands classically classified as inverse agonists rely exclusively on β-arrestin for their positive signaling activity. This phenomenon is not unique to β2-adrenergic ligands because SR121463B, an inverse agonist on the V2 vasopressin receptor-stimulated adenylyl cyclase, recruited β-arrestin and stimulated ERK1/2. These results point to a multistate model of receptor activation in which ligand-specific conformations are capable of differentially activating distinct signaling partners.
机译:越来越清楚的是,经由G蛋白偶联受体的信号传导是一种涉及受体与多种信号传导伙伴相互作用的多样化现象。尽管有这种多样性,受体配体通常仅根据其修饰G蛋白依赖性信号传导的能力进行分类。在这里,我们显示β2AR配体(如ICI118551和普萘洛尔)是Gs刺激的腺苷酸环化酶的反向激动剂,可诱导促分裂原活化的蛋白激酶(细胞外信号调节激酶,ERK)1/2的部分激动剂反应,从而表现出双重功效的配体。具有双重功效的配体激活的ERK1 / 2不受Gαi的ADP核糖基化的影响,可以在缺乏Gαs的S49-cyc–细胞中观察到,表明与传统的激动剂异丙肾上腺素不同,这些药物在Gs / i中诱导ERK1 / 2激活-独立方式。相反,这种激活被β-arrestin的显性负突变抑制,并在缺乏β-arrestin1和2的小鼠胚胎成纤维细胞中被消除。通过显示β-arrestin2的转染进一步证实了β-arrestin的作用。这些敲除的细胞恢复了ICI118551促进的ERK1 / 2激活。 ICI118551和普萘洛尔还促进β-arrestin募集到受体。综上所述,这些观察结果提示β-arrestin募集不是激动剂的排他性,并且经典分类为反向激动剂的配体仅依赖于β-arrestin的正信号传导活性。这种现象不是β2-肾上腺素配体所独有的,因为SR121463B是V2加压素受体刺激的腺苷酸环化酶的反向激动剂,可以募集β-arrestin并刺激ERK1 / 2。这些结果指向受体激活的多状态模型,其中配体特异性构象能够差异激活不同的信号配偶体。

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