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Functional roles of cytoplasmic loops and pore lining transmembrane helices in the voltage-dependent inactivation of HVA calcium channels

机译:细胞质环和孔壁跨膜螺旋在HVA钙通道的电压依赖性失活中的功能作用

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摘要

Voltage-dependent inactivation of calcium channels is a key mechanism for regulating intracellular calcium levels and neuronal excitability. In sodium and potassium channels, the molecular determinants that govern fast inactivation involve pore block by a cytoplasmic gating particle. As we discuss here, there is an increasing body of evidence that is consistent with a qualitatively similar inactivation mechanism in high-voltage-activated calcium channels. Work from a number of laboratories has implicated both cytoplasmic regions and the pore-lining S6 transmembrane helices in the inactivation process. Together with our recent findings, this leads us to propose a model in which the intracellular domain I–II linker region acts as a ‘hinged lid’ that physically occludes the pore by docking to the cytoplasmic ends of the S6 segments. We further propose that the ancillary calcium channel β subunits differentially modulate inactivation kinetics by binding to and thereby regulating the mobility of the putative inactivation gate. Indeed, additional evidence suggests that the carboxy terminus, amino terminus and domain III–IV linker regions of the channel modulate inactivation rates through interactions with the I–II linker per se, or indirectly via the ancillary β subunits. Taken together, the fast voltage-dependent inactivation of calcium channels appears reminiscent of that of sodium channels, but appears to show a more complex regulation through intramolecular interactions between the putative inactivation gate and other cytoplasmic regions.
机译:电压依赖性钙通道失活是调节细胞内钙水平和神经元兴奋性的关键机制。在钠和钾通道中,决定快速灭活的分子决定簇涉及细胞质门控颗粒的孔阻塞。正如我们在此处讨论的那样,越来越多的证据与高压激活的钙通道中的定性类似的失活机制相一致。许多实验室的工作都涉及灭活过程中的细胞质区域和带孔的S6跨膜螺旋。结合我们最近的发现,我们提出了一个模型,其中细胞内结构域I–II接头区域充当“铰接盖”,通过与S6区段的细胞质末端对接而物理上堵塞了孔。我们进一步提出,辅助钙通道β亚基通过结合至假定失活门并由此调节其失活而差异地调节失活动力学。确实,其他证据表明,通道的羧基末端,氨基末端和结构域III-IV接头区域通过与I-II接头本身的相互作用或间接通过辅助β亚基来调节失活速率。综上所述,钙通道的快速电压依赖性失活似乎让人联想到钠通道的失活,但似乎通过推定的失活门与其他细胞质区域之间的分子内相互作用显示出更复杂的调节。

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