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RGK regulation of voltage-gated calcium channels

机译:RGK调节电压门控钙通道

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Voltage-gated calcium channels (VGCCs) play critical roles in cardiac and skeletal muscle contractions, hormone and neurotransmitter release, as well as slower processes such as cell proliferation, differentiation, migration and death. Mutations in VGCCs lead to numerous cardiac, muscle and neurological disease, and their physiological function is tightly regulated by kinases, phosphatases, G-proteins, calmodulin and many other proteins. Fifteen years ago, RGK proteins were discovered as the most potent endogenous regulators of VGCCs. They are a family of monomeric GTPases (Rad, Rem, Rem2, and Gem/Kir), in the superfamily of Ras GTPases, and they have two known functions: regulation of cytoskeletal dynamics including dendritic arborization and inhibition of VGCCs. Here we review the mechanisms and molecular determinants of RGK-mediated VGCC inhibition, the physiological impact of this inhibition, and recent evidence linking the two known RGK functions. Keywords calcium channel modulation trafficking cardiac physiology neurobiology beta subunit.
机译:电压门控钙通道(VGCC)在心肌和骨骼肌的收缩,激素和神经递质的释放以及细胞增殖,分化,迁移和死亡等较慢的过程中发挥着关键作用。 VGCC的突变会导致许多心脏,肌肉和神经系统疾病,其生理功能受到激酶,磷酸酶,G蛋白,钙调蛋白和许多其他蛋白的严格调控。十五年前,发现RGK蛋白是VGCC最有效的内源性调节剂。它们是Ras GTPases的超家族中的一个单体GTPases(Rad,Rem,Rem2和Gem / Kir)家族,并且具有两个已知功能:调节细胞骨架动力学,包括树突状乔木化和抑制VGCC。在这里,我们回顾了RGK介导的VGCC抑制的机制和分子决定因素,这种抑制的生理影响,以及将两个已知的RGK功能联系起来的最新证据。关键词钙通道调节运输心脏生理神经生物学β亚基。

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