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Marine Toxins That Target Voltage-gated Sodium Channels

机译:靶向电压门控钠通道的海洋毒素

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摘要

Eukaryotic, voltage-gated sodium (NaV) channels are large membrane proteins which underlie generation and propagation of rapid electrical signals in nerve, muscle and heart. Nine different NaV receptor sites, for natural ligands and/or drugs, have been identified, based on functional analyses and site-directed mutagenesis. In the marine ecosystem, numerous toxins have evolved to disrupt NaV channel function, either by inhibition of current flow through the channels, or by modifying the activation and inactivation gating processes by which the channels open and close. These toxins function in their native environment as offensive or defensive weapons in prey capture or deterrence of predators. In composition, they range from organic molecules of varying size and complexity to peptides consisting of ~10–70 amino acids. We review the variety of known NaV-targeted marine toxins, outlining, where known, their sites of interaction with the channel protein and their functional effects. In a number of cases, these natural ligands have the potential applications as drugs in clinical settings, or as models for drug development.
机译:真核,电压门控钠(NaV)通道是大的膜蛋白,是神经,肌肉和心脏中快速电信号的产生和传播的基础。基于功能分析和定点诱变,已鉴定出九个不同的天然配体和/或药物NaV受体位点。在海洋生态系统中,通过抑制流过通道的电流或通过修改通道打开和关闭的激活和失活门控过程,已经进化出许多毒素来破坏NaV通道功能。这些毒素在其本机环境中充当猎物捕获或威慑掠食者的进攻或防御武器。从组成上讲,它们的范围从大小和复杂程度不同的有机分子到由约10-70个氨基酸组成的肽。我们审查了各种已知的针对NaV的海洋毒素,概述了已知的与通道蛋白相互作用的位点及其功能作用。在许多情况下,这些天然配体具有作为临床环境中的药物或药物开发模型的潜在应用。

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