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RGS4 regulates partial agonism of the M2 muscarinic receptor-activated K+ currents

机译:RGS4调节M2毒蕈碱受体激活的K +电流的部分激动作用

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摘要

Partial agonists are used clinically to avoid overstimulation of receptor-mediated signalling, as they produce a submaximal response even at 100% receptor occupancy. The submaximal efficacy of partial agonists is due to conformational change of the agonist–receptor complex, which reduces effector activation. In addition to signalling activators, several regulators help control intracellular signal transductions. However, it remains unclear whether these signalling regulators contribute to partial agonism. Here we show that regulator of G-protein signalling (RGS) 4 is a determinant for partial agonism of the M2 muscarinic receptor (M2R). In rat atrial myocytes, pilocarpine evoked smaller G-protein-gated K+ inwardly rectifying (KG) currents than those evoked by ACh. In a Xenopus oocyte expression system, pilocarpine acted as a partial agonist in the presence of RGS4 as it did in atrial myocytes, while it acted like a full agonist in the absence of RGS4. Functional couplings within the agonist–receptor complex/G-protein/RGS4 system controlled the efficacy of pilocarpine relative to ACh. The pilocarpine–M2R complex suppressed G-protein-mediated activation of KG currents via RGS4. Our results demonstrate that partial agonism of M2R is regulated by the RGS4-mediated inhibition of G-protein signalling. This finding helps us to understand the molecular components and mechanism underlying the partial agonism of M2R-mediated physiological responses.
机译:临床上使用部分激动剂来避免过度刺激受体介导的信号传导,因为即使在100%的受体占有率下它们也会产生次最大的反应。部分激动剂的亚最大功效是由于激动剂-受体复合物的构象变化,从而降低了效应子的激活。除信号激活剂外,几种调节剂还有助于控制细胞内信号转导。然而,尚不清楚这些信号调节剂是否促成部分激动作用。在这里,我们显示G蛋白信号(RGS)4的调节剂是M2毒蕈碱受体(M2R)部分激动的决定因素。在大鼠心房肌细胞中,毛果芸香碱诱发的G蛋白门控K + 内向整流(KG)电流比乙酰胆碱诱发的电流小。在非洲爪蟾卵母细胞表达系统中,毛果芸香碱在存在RGS4时起部分激动剂的作用,就像在心房肌细胞中起的作用一样,而在没有RGS4的情况下起完全激动剂的作用。激动剂-受体复合物/ G蛋白/ RGS4系统中的功能性偶联控制毛果芸香碱相对于ACh的功效。毛果芸香碱-M2R复合物通过RGS4抑制了G蛋白介导的KG电流激活。我们的结果表明,M2R的部分激动作用是由RGS4介导的G蛋白信号转导抑制所调节的。这一发现有助于我们理解M2R介导的生理反应的部分激动作用的分子组成和机制。

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