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首页> 外文期刊>Cell Reports >Human Slack Potassium Channel Mutations Increase Positive Cooperativity between Individual Channels
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Human Slack Potassium Channel Mutations Increase Positive Cooperativity between Individual Channels

机译:人类松弛钾通道突变增加单个通道之间的正合作性

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Disease-causing mutations in ion channels generally alter intrinsic gating properties such as activation, inactivation, and voltage dependence. We examined nine different mutations of the KCNT1 (Slack) Na^+-activated K^+ channel that give rise to three distinct forms of epilepsy. All produced many-fold increases in current amplitude compared to the wild-type channel. This could not be accounted for by increases in the intrinsic open probability of individual channels. Rather, greatly increased opening was a consequence of cooperative interactions between multiple channels in a patch. The degree of cooperative gating was much greater for all of the mutant channels than for the wild-type channel, and could explain increases in current even in a mutant with reduced unitary conductance. We also found that the same mutation gave rise to different forms of epilepsy in different individuals. Our findings indicate that a major consequence of these mutations is to alter channel-channel interactions.
机译:离子通道中的致病突变通常会改变内在的门控特性,例如激活,失活和电压依赖性。我们检查了KCNT1(松弛)Na ^ +激活的K ^ +通道的九种不同突变,这些突变引起了三种不同形式的癫痫。与野生型通道相比,所有电流幅度都产生了许多倍的增加。不能通过增加单个通道的内在开放概率来解决此问题。相反,大大增加的开放是补丁中多个通道之间协作交互的结果。与野生型通道相比,所有突变型通道的协同门控程度要大得多,即使在单位电导降低的突变型中,也可以解释电流的增加。我们还发现,同一突变在不同个体中引起不同形式的癫痫。我们的发现表明,这些突变的主要结果是改变通道-通道相互作用。

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