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首页> 外文期刊>The Journal of Physiology >Negative charges in the DIII-DIV linker of human skeletal muscle Na+ channels regulate deactivation gating.
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Negative charges in the DIII-DIV linker of human skeletal muscle Na+ channels regulate deactivation gating.

机译:人骨骼肌Na +通道的DIII-DIV接头中的负电荷调节失活门控。

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摘要

Charge reversing, neutralizing and substituting mutations at D1309 and EE1314,15 in the DIII-DIV linker of the human skeletal muscle sodium channel hNav1.4 were constructed and expressed in Xenopus oocytes. The effects of these mutations on conductance, inactivation and deactivation were determined using on-cell macropatches. D1309R caused a depolarizing shift of the conductance-voltage (g(V)) curve and increased the apparent valency of activation. D1309R and EE1314,15RR increased time to peak activation. D1309R caused a depolarizing shift of the steady-state fast inactivation curve, whereas EE1314,15RR produced a hyperpolarizing shift and decreased the apparent valency. Charge reversal at either D1309 or EE1314,15 slowed open-state fast inactivation and accelerated closed-state fast inactivation. D1309R accelerated recovery from fast inactivation, whereas EE1314,15RR and EE1314,15QQ slowed recovery. Deactivation from the inactivated state was determined by the delay in the onset to recovery from fast inactivation. Recovery delay was abbreviated for D1309R but was prolonged for EE1314,15RR and EE1314,15QQ. Open-state deactivation was determined from the time constant of the decay (tau D) of tail currents. tau D was slowed by D1309R, D1309E, EE1314,15RR and EE1314,15QQ. Our findings suggest an important role in deactivation gating in hNav1.4 for the negative cluster of charge at EE1314,15. These and previous findings suggest that clusters of negatively and positively charged residues in the hNav1.4 DIII-DIV linker differentially regulate the kinetics of fast inactivation.
机译:在非洲人骨骼肌钠通道hNav1.4的DIII-DIV接头中,在D1309和EE1314,15处的电荷反转,中和和取代突变被构建并在非洲爪蟾卵母细胞中表达。这些突变对电导,失活和失活的影响使用细胞上的大斑块确定。 D1309R引起了电导电压(g(V))曲线的去极化偏移,并增加了激活的表观价。 D1309R和EE1314,15RR增加了达到峰值激活的时间。 D1309R引起稳态快速灭活曲线的去极化移动,而EE1314,15RR产生了超极化移动并降低了表观价。 D1309或EE1314,15处的电荷反转会减慢开态快速失活,并加速闭态快速失活。 D1309R从快速灭活加速了恢复,而EE1314,15RR和EE1314,15QQ减慢了恢复速度。从失活状态的失活取决于从快速失活开始到恢复的延迟。 D1309R的恢复延迟被缩写,但EE1314,15RR和EE1314,15QQ的恢复延迟被延长。根据尾电流的衰减时间常数(τD)确定开态失活。 D1309R,D1309E,EE1314,15RR和EE1314,15QQ使tau D变慢了。我们的发现表明在hNav1.4的失活门控中,EE1314,15负电荷簇的重要作用。这些和以前的发现表明,hNav1.4 DIII-DIV连接子中带负电荷和带正电荷的残基簇可差异地调节快速灭活的动力学。

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