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G protein modulation of voltage-gated calcium channels.

机译:G蛋白调节电压门控钙通道。

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Calcium influx into any cell requires fine tuning to guarantee the correct balance between activation of calcium-dependent processes, such as muscle contraction and neurotransmitter release, and calcium-induced cell damage. G protein-coupled receptors play a critical role in negative feedback to modulate the activity of the CaV2 subfamily of the voltage-dependent calcium channels, which are largely situated on neuronal and neuro-endocrine cells. The basis for the specificity of the relationships among membrane receptors, G proteins, and effector calcium channels will be discussed, as well as the mechanism by which G protein-mediated inhibition is thought to occur. The inhibition requires free G beta gamma dimers, and the cytoplasmic linker between domains I and II of the CaV2 alpha 1 subunits binds G beta gamma dimers, whereas the intracellular N terminus of CaV2 alpha 1 subunits provides essential determinants for G protein modulation. Evidence suggests a key role for the beta subunits of calcium channels in the process of G protein modulation, and the role of a class of proteins termed "regulators of G protein signaling" will also be described.
机译:钙流入任何细胞都需要进行微调,以确保钙依赖性过程(如肌肉收缩和神经递质释放)的活化与钙诱导的细胞损伤之间的正确平衡。 G蛋白偶联受体在负反馈中起关键作用,以调节电压依赖性钙通道的CaV2亚家族的活性,该通道主要位于神经元和神经内分泌细胞上。将讨论膜受体,G蛋白和效应钙通道之间关系的特异性的基础,以及认为发生G蛋白介导的抑制作用的机理。抑制作用需要游离的Gβγ二聚体,而CaV2α1亚基的结构域I和II之间的胞质接头结合Gβγ二聚体,而CaV2α1亚基的胞内N末端为G蛋白的调节提供了重要的决定因素。证据表明钙通道的β亚基在G蛋白调节过程中起着关键作用,还将描述一类称为“ G蛋白信号调节剂”的蛋白的作用。

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