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骨骼肌钠通道的电荷固定:失活连接子中残基的作用

Charge immobilization of skeletal muscle Na+ channels: role of residues in the inactivation linker.

作者信息

Groome James R, Dice Margaret C, Fujimoto Esther, Ruben Peter C

机构信息

Department of Biological Sciences, Idaho State University, Pocatello, ID 83209-8007, USA.

出版信息

Biophys J. 2007 Sep 1;93(5):1519-33. doi: 10.1529/biophysj.106.102079. Epub 2007 May 18.

Abstract

We investigated structural determinants of fast inactivation and deactivation in sodium channels by comparing ionic flux and charge movement in skeletal muscle channels, using mutations of DIII-DIV linker charges. Charge altering and substituting mutations at K-1317, K-1318 depolarized the g(V) curve but hyperpolarized the h(infinity) curve. Charge reversal and substitution at this locus reduced the apparent voltage sensitivity of open- and closed-state fast inactivation. These effects were not observed with charge reversal at E-1314, E-1315. Mutations swapping or neutralizing the negative cluster at 1314, 1315 and the positive cluster at 1317, 1318 indicated that local interactions dictate the coupling of activation to fast inactivation. Gating charge was immobilized before channel entry into fast inactivation in hNa(V)1.4 but to a lesser extent in mutations at K-1317, K-1318. These results suggest that charge is preferentially immobilized in channels inactivating from the open state. Recovery of gating charge proceeded with a single, fast phase in the double mutation K-1317R, K-1318R. This mutation also partially uncoupled recovery from deactivation. Our findings indicate that charged residues near the fast inactivation "particle" allosterically interact with voltage sensors to control aspects of gating in sodium channels.

摘要

我们通过比较骨骼肌通道中的离子通量和电荷移动,利用III区- IV区连接子电荷的突变,研究了钠通道快速失活和去激活的结构决定因素。K - 1317、K - 1318处的电荷改变和取代突变使g(V)曲线去极化,但使h(∞)曲线超极化。该位点的电荷反转和取代降低了开放态和关闭态快速失活的表观电压敏感性。在E - 1314、E - 1315处进行电荷反转未观察到这些效应。交换或中和1314、1315处的负电荷簇与1317、1318处的正电荷簇的突变表明,局部相互作用决定了激活与快速失活的偶联。在hNa(V)1.4中,门控电荷在通道进入快速失活之前被固定,但在K - 1317、K - 1318处的突变中程度较小。这些结果表明,电荷优先在从开放状态失活的通道中被固定。在双突变K - 1317R、K - 1318R中,门控电荷的恢复以单一快速相进行。该突变还部分解除了失活后恢复的偶联。我们的研究结果表明,快速失活“颗粒”附近的带电残基与电压传感器发生变构相互作用,以控制钠通道门控的各个方面。

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