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首页> 外文期刊>Molecular pharmacology. >Conformational rearrangements and signaling cascades involved in ligand-biased mitogen-activated protein kinase signaling through the beta1-adrenergic receptor.
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Conformational rearrangements and signaling cascades involved in ligand-biased mitogen-activated protein kinase signaling through the beta1-adrenergic receptor.

机译:构象重排和信号转导级联通过β1-肾上腺素受体参与配体偏向的丝裂原活化蛋白激酶信号转导。

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摘要

In recent years, several studies have demonstrated that different ligands can have distinct efficacy profiles toward various signaling pathways through a unique receptor. For example, beta1-adrenergic compounds that are inverse agonists toward the adenylyl cyclase (AC) can display agonist activity for the mitogen-activated protein kinase (MAPK) pathway. Such a phenomenon, often termed functional selectivity, has now been clearly established for many G protein-coupled receptors when considering distinct signaling output. However, the possibility that ligands could selectively engage distinct effectors to activate a single signaling output by promoting specific receptor conformations has not been extensively examined. Here, we took advantage of the fact that isoproterenol, bucindolol and propranolol (full, partial, and inverse agonists for the AC pathway, respectively) all activate MAPK through the beta1-adrenergic receptor (beta1AR) to probe such conformational-biased signaling. Although the three compounds stimulated MAPK in a src-dependent manner, isoproterenol acted through both Galpha(i)betagamma- and G protein-independent pathways, whereas bucindolol and propranolol promoted MAPK activation through the G protein-independent pathway only. The existence of such distinct signaling cascades linking beta1AR to MAPK activation was correlated with ligand-specific conformational rearrangements of receptor/G protein complexes measured by bioluminescence resonance energy transfer. Taken together, our data indicate that discrete local conformational changes can selectively promote the recruitment of distinct proximal signaling partners that can engage distinct signaling outputs and/or converge on the same signaling output.
机译:近年来,几项研究表明,不同的配体对通过独特受体的各种信号通路具有不同的功效。例如,对腺苷酸环化酶(AC)呈反向激动剂的β1-肾上腺素化合物可显示促分裂原激活的蛋白激酶(MAPK)途径的激动剂活性。当考虑到不同的信号输出时,对于许多G蛋白偶联受体,现已清楚地建立了这种现象,通常称为功能选择性。然而,尚未广泛研究配体可以通过促进特异性受体构象选择性地结合不同的效应子以激活单个信号输出的可能性。在这里,我们利用了一个事实,即异丙肾上腺素,丁三醇和普萘洛尔(分别为AC通路的完全,部分和反向激动剂)都通过β1-肾上腺素能受体(beta1AR)激活MAPK,以探测这种构象偏向信号。尽管这三种化合物以src依赖的方式刺激MAPK,但异丙肾上腺素通过Galpha(i)betagamma和G蛋白独立的途径起作用,而丁三醇和普萘洛尔仅通过G蛋白独立的途径促进MAPK活化。这种独特的信号级联连接beta1AR与MAPK激活的存在与通过生物发光共振能量转移测量的受体/ G蛋白复合物的配体特异性构象重排有关。两者合计,我们的数据表明离散的局部构象变化可以选择性地促进不同的近端信号伴侣的募集,这些伙伴可以参与不同的信号输出和/或会聚在同一信号输出上。

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