Bertoli A, Moran O, Conti F
Istituto di Cibernetica e Biofisica, C.N.R., Genova, Italy.
Eur Biophys J. 1994;23(5):379-84. doi: 10.1007/BF00188662.
We studied the activation properties of members of the Shaker-related subfamily of voltage-gated K+ channels cloned from rat brain and expressed in Xenopus oocytes. We find that Kv1.1, Kv1.4, Kv1.5, and Kv1.6 have similar activation and deactivation kinetics. The k+ currents produced by step depolarisations increase with a sigmoidal time course that can be described by a delay and by the derivative of the current at the inflection point. The delay tends to zero and the logarithmic derivative seems to approach a finite value at large positive voltages, but these asymptotic values are not yet reached at +80 mV. Deactivation of the currents upon stepping to negative membrane potentials below -60 mV is fairly well described by a single exponential. The decrease of the deactivation time constant at increasingly negative voltages tends to become less steep, indicating that this parameter also has a finite limiting value, which is not yet reached, however, at -160 mV. The various clones studied have very similar voltage dependencies of activation with half-activation voltages ranging between -50 and -11 mV and maximum steepness yielding and e-fold change for voltage increments between 3.8 and 7.0 mV. The shallower activation curve of Kv1.4 is likely to be due to coupling with the fast inactivation process present in this clone.
我们研究了从大鼠脑中克隆并在非洲爪蟾卵母细胞中表达的电压门控钾离子通道的Shaker相关亚家族成员的激活特性。我们发现Kv1.1、Kv1.4、Kv1.5和Kv1.6具有相似的激活和失活动力学。阶跃去极化产生的钾离子电流随S形时间进程增加,该进程可用延迟以及电流在拐点处的导数来描述。在大的正电压下,延迟趋于零,对数导数似乎接近一个有限值,但在+80 mV时尚未达到这些渐近值。当阶跃到低于 -60 mV的负膜电位时,电流的失活可用单指数很好地描述。在越来越负的电压下,失活时间常数的减小趋于变得不那么陡峭,表明该参数也有一个有限的极限值,然而在 -160 mV时尚未达到。所研究的各种克隆具有非常相似的激活电压依赖性,半激活电压范围在 -50至 -11 mV之间,最大斜率产生的电压增量为3.8至7.0 mV时的e倍变化。Kv1.4较浅的激活曲线可能是由于与该克隆中存在的快速失活过程耦合所致。