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Interaction of tarantula venom peptide ProTx-II with lipid membranes is a prerequisite for its inhibition of human voltage-gated sodium channel NaV1.7

机译:狼蛛毒肽ProTx-II与脂质膜的相互作用是其抑制人电压门控钠通道NaV1.7的先决条件

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摘要

ProTx-II is a disulfide-rich peptide toxin from tarantula venom able to inhibit the human voltage-gated sodium channel 1.7 (hNa(V)1.7), a channel reported to be involved in nociception, and thus it might have potential as a pain therapeutic. ProTx-II acts by binding to the membrane-embedded voltage sensor domain of hNa(V)1.7, but the precise peptide channel-binding site and the importance of membrane binding on the inhibitory activity of ProTx-II remain unknown. In this study, we examined the structure and membrane-binding properties of ProTx-II and several analogues using NMR spectroscopy, surface plasmon resonance, fluorescence spectroscopy, and molecular dynamics simulations. Our results show a direct correlation between ProTx-II membrane binding affinity and its potency as an hNa(V)1.7 channel inhibitor. The data support a model whereby a hydrophobic patch on the ProTx-II surface anchors the molecule at the cell surface in a position that optimizes interaction of the peptide with the binding site on the voltage sensor domain. This is the first study to demonstrate that binding of ProTx-II to the lipid membrane is directly linked to its potency as an hNa(V)1.7 channel inhibitor.
机译:ProTx-II是狼蛛毒液中富含二硫键的肽毒素,能够抑制人电压门控钠通道1.7(hNa(V)1.7),该通道据报道参与伤害感受,因此可能具有潜在的疼痛作用治疗。 ProTx-II通过与hNa(V)1.7的膜嵌入电压传感器结构域结合而起作用,但是精确的肽通道结合位点和膜结合对ProTx-II抑制活性的重要性仍然未知。在这项研究中,我们使用NMR光谱,表面等离振子共振,荧光光谱和分子动力学模拟研究了ProTx-II和几种类似物的结构和膜结合特性。我们的结果显示ProTx-II膜结合亲和力与其作为hNa(V)1.7通道抑制剂的效能之间存在直接关系。数据支持一个模型,通过该模型,ProTx-II表面上的疏水膜片将分子锚定在细胞表面的某个位置上,该位置可优化肽与电压传感器域上结合位点的相互作用。这是第一项证明ProTx-II与脂质膜结合直接与其作为hNa(V)1.7通道抑制剂的功效有关的研究。

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