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定量分析 Ca(V)1.2 中孔隙-电压传感器相互作用的方法。

Methods for quantification of pore-voltage sensor interaction in Ca(V)1.2.

机构信息

Department of Neurophysiology and Neuropharmacology, Medical University of Vienna, Schwarzspanierstrasse 17, 1090, Vienna, Austria.

出版信息

Pflugers Arch. 2014 Feb;466(2):265-74. doi: 10.1007/s00424-013-1319-8. Epub 2013 Jul 20.

Abstract

Voltage sensors (VSs) initiate the pore opening and closure in voltage-gated ion channels. Here, we propose a technique for estimation of the equilibrium constant of the up- and downward VS movements and rate constants of pore transitions from macroscopic current kinetics. Bell-shaped voltage dependence of the activation/deactivation time constants and Bolzmann distributions of CaV1.2 activation were analyzed in terms of a circular four-state (rest, activated, open, deactivated) channel model: both dependencies uniquely constrain the model parameters. Neutralization of gating charges in IS4 or IIS4 only slightly affects the equilibrium constant of VS transition while affecting simultaneously the rate constants of pore opening and closure. The application of our technique revealed that pore mutations on IS6-IVS6 segments induce pronounced shifts of the VS equilibrium between the resting (down) and activated (up) position. Analyzing a channelopathy mutation highlighted that the leftward shift of the activation curve induced by I781T on IIS6 is only partially (35 %) caused by a destabilization of the channel pore but predominantly (65 %) by a shifted VS equilibrium towards activation. The algorithm proposed for CaV1.2 may be applicable for calculating rate constants from macroscopic current kinetics in other voltage-gated ion channels.

摘要

电压传感器 (VSs) 启动电压门控离子通道的孔开放和关闭。在这里,我们提出了一种从宏观电流动力学估算向上和向下 VS 运动的平衡常数和孔跃迁速率常数的技术。根据圆形四态 (静止、激活、开放、失活) 通道模型分析激活/失活时标常数的钟形电压依赖性和 CaV1.2 的玻尔兹曼分布:这两种依赖性唯一地限制了模型参数。在 IS4 或 IIS4 中中和门控电荷仅略微影响 VS 跃迁的平衡常数,同时影响孔开放和关闭的速率常数。我们技术的应用表明,IS6-IVS6 段上的孔突变诱导 VS 平衡在静止 (向下) 和激活 (向上) 位置之间明显移动。分析一种通道病突变突出表明,IIS6 上的 I781T 引起的激活曲线向左移动仅部分 (35%) 是由于通道孔的不稳定性,主要 (65%) 是由于 VS 平衡向激活方向移动。为 CaV1.2 提出的算法可能适用于从其他电压门控离子通道的宏观电流动力学计算速率常数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2747/3902079/8f5e85acefd0/424_2013_1319_Sch1_HTML.jpg

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