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ProTx-I和ProTx-II:电压门控钠通道的门控修饰剂。

ProTx-I and ProTx-II: gating modifiers of voltage-gated sodium channels.

作者信息

Priest Birgit T, Blumenthal Kenneth M, Smith Jaime J, Warren Vivien A, Smith McHardy M

机构信息

Merck Research Laboratories, P.O. Box 2000, Rahway, NJ 07065, USA.

出版信息

Toxicon. 2007 Feb;49(2):194-201. doi: 10.1016/j.toxicon.2006.09.014. Epub 2006 Sep 27.

Abstract

The tarantula venom peptides ProTx-I and ProTx-II inhibit voltage-gated sodium channels by shifting their voltage dependence of activation to a more positive potential, thus acting by a mechanism similar to that of potassium channel gating modifiers such as hanatoxin and VSTX1. ProTx-I and ProTx-II inhibit all sodium channel (Nav1) subtypes tested with similar potency and represent the first potent peptidyl inhibitors of TTX-resistant sodium channels. Like gating modifiers of potassium channels, ProTx-I and ProTx-II conform to the inhibitory cystine knot motif, and ProTx-II was demonstrated to bind to sodium channels in the closed state. Both toxins have been synthesized chemically, and ProTx-II, produced by recombinant means, has been used to map the interaction surface of the peptide with the Nav1.5 channel. In comparison, beta-scorpion toxins activate sodium channels by shifting the voltage dependence of activation to more negative potentials, and together these peptides represent valuable tools for exploring the gating mechanism of sodium channels.

摘要

狼蛛毒素肽ProTx-I和ProTx-II通过将电压门控钠通道的激活电压依赖性向更正的电位移动来抑制该通道,因此其作用机制类似于钾通道门控修饰剂(如汉毒素和VSTX1)。ProTx-I和ProTx-II以相似的效力抑制所有测试的钠通道(Nav1)亚型,并且是首个有效的抗河豚毒素钠通道肽类抑制剂。与钾通道门控修饰剂一样,ProTx-I和ProTx-II符合抑制性胱氨酸结基序,并且已证明ProTx-II在关闭状态下与钠通道结合。两种毒素均已通过化学方法合成,通过重组手段产生的ProTx-II已用于绘制该肽与Nav1.5通道的相互作用表面。相比之下,β-蝎毒素通过将激活电压依赖性向更负的电位移动来激活钠通道,并且这些肽共同代表了探索钠通道门控机制的有价值工具。

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