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骨骼肌钠通道DIVS4中的外部和中心带电残基在失活过程中具有不同作用。

Outer and central charged residues in DIVS4 of skeletal muscle sodium channels have differing roles in deactivation.

作者信息

Groome James, Fujimoto Esther, Walter Lisa, Ruben Peter

机构信息

Department of Biology, Harvey Mudd College, Claremont, California 91711, USA.

出版信息

Biophys J. 2002 Mar;82(3):1293-307. doi: 10.1016/S0006-3495(02)75485-4.

Abstract

We tested the effects of charge-neutralizing mutations of the eight arginine residues in DIVS4 of the rat skeletal muscle sodium channel (rNa(V)1.4) on deactivation gating from the open and inactivated states. We hypothesized that neutralization of outer or central charges would accelerate the I-to-C transition as measured by recovery delay because these represent a portion of the immobilizable charge. R1Q abbreviated recovery delay as a consequence of reduced charge content. R4Q increased delay, whereas R5Q abbreviated delay, and charge-substitutions at these residues indicated that each effect was allosteric. We also hypothesized that neutralization of any residue in DIVS4 would slow the O-to-C transition with reduction in positive charge. Reduction in charge at R1, and to a lesser extent at R5, slowed open-state deactivation, while charge neutralizations at R2, R3, R4, R6, and R7 accelerated open-state deactivation. Our findings suggest that arginine residues in DIVS4 in rNa(V)1.4 have differing roles in channel closure from open and inactivated states. Furthermore, they suggest that deactivation in DIVS4 is regulated by charge interaction between the electrical field with the outermost residue, and by local allosteric interactions imparted by central charges.

摘要

我们测试了大鼠骨骼肌钠通道(rNa(V)1.4)结构域IV S4中八个精氨酸残基的电荷中和突变对通道从开放态和失活态去激活门控的影响。我们假设,通过恢复延迟来衡量,外部或中心电荷的中和会加速I到C的转变,因为这些电荷代表了不可移动电荷的一部分。R1Q由于电荷含量减少而使恢复延迟缩短。R4Q增加了延迟,而R5Q缩短了延迟,这些残基处的电荷取代表明每种效应都是变构的。我们还假设,结构域IV S4中任何残基的中和都会随着正电荷的减少而减缓O到C的转变。R1处电荷的减少,以及程度较小的R5处电荷的减少减缓了开放态去激活,而R2、R3、R4、R6和R7处的电荷中和加速了开放态去激活。我们的研究结果表明,rNa(V)1.4结构域IV S4中的精氨酸残基在通道从开放态和失活态关闭过程中具有不同作用。此外,这些结果表明,结构域IV S4中的去激活受电场与最外层残基之间的电荷相互作用以及中心电荷产生的局部变构相互作用调控。

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