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Modification of inactivation in cardiac sodium channels: ionic current studies with Anthopleurin-A toxin

机译:修饰心肌钠通道的失活:用花青素-A毒素进行离子电流研究

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摘要

The site 3 toxin, Anthopleurin-A (Ap-A), was used to modify inactivation of sodium channels in voltage-clamped single canine cardiac Purkinje cells at approximately 12 degrees C. Although Ap-A toxin markedly prolonged decay of sodium current (INa) in response to step depolarizations, there was only a minor hyperpolarizing shift by 2.5 +/- 1.7 mV (n = 13) of the half-point of the peak conductance- voltage relationship with a slight steepening of the relationship from - 8.2 +/- 0.8 mV to -7.2 +/- 0.8 mV (n = 13). Increases in Gmax were dependent on the choice of cation used as a Na substitute intracellularly and ranged between 26 +/- 15% (Cs, n = 5) to 77 +/- 19% (TMA, n = 8). Associated with Ap-A toxin modification time to peak INa occurred later, but analysis of the time course INa at multiple potentials showed that the largest effects were on inactivation with only a small effect on activation. Consistent with little change in Na channel activation by Ap-A toxin, INa tail current relaxations at very negative potentials, where the dominant process of current relaxation is deactivation, were similar in control and after toxin modification. The time course of the development of inactivation after Ap-A toxin modification was dramatically prolonged at positive potentials where Na channels open. However, it was not prolonged after Ap-A toxin at negative potentials, where channels predominately inactivate directly from closed states. Steady state voltage-dependent availability (h infinity or steady state inactivation), which predominately reflects the voltage dependence of closed-closed transitions equilibrating with closed-inactivated transitions was shifted in the depolarizing direction by only 1.9 +/- 0.8 mV (n = 8) after toxin modification. The slope factor changed from 7.2 +/- 0.8 to 9.9 +/- 0.9 mV (n = 8), consistent with a prolongation of inactivation from the open state of Ap-A toxin modified channels at more depolarized potentials. We conclude that Ap-A selectively modifies Na channel inactivation from the open state with little effect on channel activation or on inactivation from closed state(s).
机译:第3位毒素Anthopleurin-A(Ap-A)用于在约12摄氏度下修饰电压钳制的单犬心脏Purkinje细胞中钠通道的失活。尽管Ap-A毒素显着延长了钠电流(INa )响应阶跃去极化,峰值电导-电压关系的半点只有一个较小的超极化偏移2.5 +/- 1.7 mV(n = 13),并且该关系从-8.2 + /略微变陡-0.8 mV至-7.2 +/- 0.8 mV(n = 13)。 Gmax的增加取决于在细胞内用作Na替代品的阳离子的选择,介于26 +/- 15%(Cs,n = 5)至77 +/- 19%(TMA,n = 8)之间。与Ap-A毒素的修饰时间相关的是达到峰值INa的时间较晚,但是对多种电位下的时间过程INa的分析表明,最大的影响是对失活的影响,而对激活的影响很小。与Ap-A毒素对Na通道激活的影响几乎没有变化,在非常负电势下(在电流松弛的主要过程是失活的情况下),INAa尾电流松弛在对照和毒素修饰后相似。在钠通道打开的正电位下,Ap-A毒素修饰后失活发展的时间进程显着延长。然而,它不会在负电位的Ap-A毒素后延长,因为通道主要是从封闭状态直接失活。稳态电压相关的可用性(h无穷大或稳态失活)主要反映了与闭合灭活的跃迁平衡的闭合-闭合跃迁的电压依赖性,在去极化方向上仅移位了1.9 +/- 0.8 mV(n = 8) )毒素修饰后。斜率因数从7.2 +/- 0.8变为9.9 +/- 0.9 mV(n = 8),与在更多去极化电势下Ap-A毒素修饰通道的开放状态的失活时间延长一致。我们得出结论,Ap-A选择性地从开放状态修饰Na通道失活,而对通道激活或从闭合状态失活几乎没有影响。

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