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首页> 外文期刊>Molecular biology of the cell >Physical Interaction of Calmodulin with the 5-Hydroxytryptamine2C Receptor C-Terminus Is Essential for G Protein-independent, Arrestin-dependent Receptor Signaling
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Physical Interaction of Calmodulin with the 5-Hydroxytryptamine2C Receptor C-Terminus Is Essential for G Protein-independent, Arrestin-dependent Receptor Signaling

机译:钙调蛋白与5-羟基特胺2C受体C-末端的物理相互作用对于G蛋白无关,依赖于抑菌依赖性受体信号至关重要

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The serotonin (5-hydroxytryptamine; 5-HT)2C receptor is a G protein-coupled receptor (GPCR) exclusively expressed in CNS that has been implicated in numerous brain disorders, including anxio-depressive states. Like many GPCRs, 5-HT2C receptors physically interact with a variety of intracellular proteins in addition to G proteins. Here, we show that calmodulin (CaM) binds to a prototypic Ca2+-dependent “1-10” CaM-binding motif located in the proximal region of the 5-HT2C receptor C-terminus upon receptor activation by 5-HT. Mutation of this motif inhibited both β-arrestin recruitment by 5-HT2C receptor and receptor-operated extracellular signal-regulated kinase (ERK) 1,2 signaling in human embryonic kidney-293 cells, which was independent of G proteins and dependent on β-arrestins. A similar inhibition was observed in cells expressing a dominant-negative CaM or depleted of CaM by RNA interference. Expression of the CaM mutant also prevented receptor-mediated ERK1,2 phosphorylation in cultured cortical neurons and choroid plexus epithelial cells that endogenously express 5-HT2C receptors. Collectively, these findings demonstrate that physical interaction of CaM with recombinant and native 5-HT2C receptors is critical for G protein-independent, arrestin-dependent receptor signaling. This signaling pathway might be involved in neurogenesis induced by chronic treatment with 5-HT2C receptor agonists and their antidepressant-like activity.
机译:血清素(5-羟基羟基胺; 5-HT)<亚> 2C 受体是在CNS中专门表达的G蛋白偶联受体(GPCR),其涉及许多脑疾病,包括肿胀状态。与许多GPCR一样,除了G蛋白外,5-HT 2C 接受物理地与各种细胞内蛋白相互作用。在这里,我们表明钙调蛋白(CAM)与位于5-HT 2C的近端区域中的原型CA 2 + - 依赖性“1-10”凸轮绑定图案结合。受体C-末端在受体激活后5-HT。该基序的突变抑制了5-HT 2℃的β-Arcrectin募集的5-HT 2℃/ sub>受体和受体的细胞外信号调节激酶(ERK)1,2信号传导,其在人胚胎肾293细胞中,其是独立的G蛋白质和依赖于β-arrectins。在表达凸轮的细胞中观察到类似的抑制作用或通过RNA干扰耗尽凸轮。 CAM突变体的表达还防止受体介导的培养的皮质神经元和脉络丛上皮细胞中的受体介导的ERK1,2磷酸化,其内源性地表达5-HT 2℃受体。总的来说,这些发现表明,凸轮与重组和天然5-HT <亚> 2C 受体的物理相互作用对于G蛋白无关,依赖于抑菌依赖性受体信号至关重要。该信号通路可能涉及通过用5-HT 2C 受体激动剂及其抗抑郁的活性致慢性处理诱导的神经发生。

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