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The interaction of spider gating modifier peptides with voltage-gated potassium channels

机译:蜘蛛门控修饰子肽与电压门控钾通道的相互作用

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摘要

Gating modifier peptides bind to ion channels and alter the gating process of these molecules. One of the most extensively studied peptides, Hanatoxin (HaTx), isolated from a Chilean tarantula, has been used to characterize the blocking properties of the voltage-gated potassium channel Kv2.1. These studies have provided some insight into the gating mechanism in Kv channels. In this review we will discuss the interaction of HaTx and related spider peptides with Kv channels illustrating the properties of the binding surface of these peptides, their membrane partitioning characteristics, and will provide a working hypothesis for how the peptides inhibit gating of Kv channels. Advanced simulation results support the concept of mutual conformational changes upon peptide binding to the S3b region of the channel which will restrict movement of S4 and compromise coupling of the gating machinery to opening of the pore.
机译:门控修饰肽与离子通道结合并改变这些分子的门控过程。从智利狼蛛中分离出来的一种最广泛研究的肽,Hanatoxin(HaTx)已用于表征电压门控钾通道Kv2.1的阻断特性。这些研究为Kv通道的门控机制提供了一些见识。在这篇综述中,我们将讨论HaTx和相关蜘蛛肽与Kv通道的相互作用,这些相互作用说明了这些肽的结合表面的特性,它们的膜分配特性,并将为该肽如何抑制Kv通道的门控提供有效的假设。先进的模拟结果支持在肽结合至通道的S3b区域时相互构象变化的概念,这将限制S4的移动并损害选通机制与孔洞的耦合。

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