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Working model for the structural basis for KCNE1 modulation of the KCNQ1 potassium channel

机译:KCNQ1钾通道KCNE1调节的结构基础的工作模型

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摘要

The voltage-gated potassium channel KCNQ1 (Kv7.1) is modulated by KCNE1 (minK) to generate the I_(Ks) current crucial to heartbeat. Defects in either protein result in serious cardiac arrhythmias. Recently developed structural models of the open and closed state KCNQ1/KCNE1 complexes offer a compelling explanation for how KCNE1 slows channel opening and provides a platform from which to refine and test hypotheses for other aspects of KCNE1 modulation. These working models were developed using an integrative approach based on results from nuclear magnetic resonance spectroscopy, electrophysiology, biochemistry, and computational methods-an approach that can be applied iteratively for model testing and revision. We present a critical review of these structural models, illustrating the strengths and challenges of the integrative approach.
机译:电压门控钾通道KCNQ1(Kv7.1)由KCNE1(minK)调制,以生成对心跳至关重要的I_(Ks)电流。两种蛋白质的缺陷都会导致严重的心律不齐。最近开发的打开和关闭状态KCNQ1 / KCNE1复合物的结构模型为KCNE1如何减慢通道打开速度提供了令人信服的解释,并提供了一个平台,可以用来完善和测试KCNE1调制其他方面的假设。这些工作模型是基于核磁共振波谱,电生理学,生物化学和计算方法的结果,使用集成方法开发的,该方法可以迭代地应用于模型测试和修订。我们对这些结构模型进行了严格的审查,说明了整合方法的优势和挑战。

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