Wang G K, Brodwick M S, Eaton D C
J Gen Physiol. 1985 Aug;86(2):289-302. doi: 10.1085/jgp.86.2.289.
We have investigated the effects of a mild oxidant, chloramine-T(CT), on the sodium and potassium currents of squid axons under voltage-clamp conditions. Sodium channel inactivation of squid giant axons can be completely removed by CT at neutral pH. Internal and external CT treatment are both effective. CT apparently removes inactivation in an irreversible, all-or-none manner. The activation process of sodium channels is little affected, as judged from the voltage dependence of peak sodium currents, the rising phase of sodium currents, and the time course of tail currents following the repolarization. The removal of inactivation by CT is pH-dependent; higher pH decreases the removal rate, whereas lower pH increases it. Internal metabisulfite, a strong reductant, does not protect inactivation from the action of external CT, nor does external metabisulfite protect from internal CT application. CT slightly depresses the peak potassium currents at comparable concentrations but has no apparent effects on their kinetics. Our results suggest that the neutral form of CT modifies an embedded methionine residue that is involved in sodium channel inactivation.
我们研究了一种温和的氧化剂氯胺 - T(CT)在电压钳制条件下对鱿鱼轴突钠电流和钾电流的影响。在中性pH值下,CT可完全消除鱿鱼巨轴突的钠通道失活。内部和外部CT处理均有效。CT显然以不可逆的全或无方式消除失活。从峰值钠电流的电压依赖性、钠电流的上升相以及复极化后尾电流的时间进程判断,钠通道的激活过程几乎不受影响。CT对失活的消除依赖于pH值;较高的pH值会降低消除速率,而较低的pH值会提高消除速率。内部偏亚硫酸氢盐是一种强还原剂,它既不能保护失活免受外部CT的作用,外部偏亚硫酸氢盐也不能保护免受内部CT的作用。在相当浓度下,CT会轻微降低峰值钾电流,但对其动力学没有明显影响。我们的结果表明,CT的中性形式修饰了一个参与钠通道失活的嵌入甲硫氨酸残基。