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首页> 外文期刊>The Journal of biological chemistry >Unique Bell-shaped Voltage-dependent Modulation of Na+ Channel Gating by Novel Insect-selective Toxins from the Spider Agelena orientalis
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Unique Bell-shaped Voltage-dependent Modulation of Na+ Channel Gating by Novel Insect-selective Toxins from the Spider Agelena orientalis

机译:来自Spider Agelena Orientalis的新型昆虫选择性毒素的Na +通道门控Na +通道的独特钟形依赖性调制

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Spider venoms provide a highly valuable source of peptide toxins that act on a wide diversity of membrane-bound receptors and ion channels. In this work, we report isolation, biochemical analysis, and pharmacological characterization of a novel family of spider peptide toxins, designated β/δ-agatoxins. These toxins consist of 36–38 amino acid residues and originate from the venom of the agelenid funnel-web spider Agelena orientalis. The presented toxins show considerable amino acid sequence similarity to other known toxins such as μ-agatoxins, curtatoxins, and δ-palutoxins-IT from the related spiders Agelenopsis aperta, Hololena curta, and Paracoelotes luctuosus. β/δ-Agatoxins modulate the insect NaV channel (DmNaV1/tipE) in a unique manner, with both the activation and inactivation processes being affected. The voltage dependence of activation is shifted toward more hyperpolarized potentials (analogous to site 4 toxins) and a non-inactivating persistent Na+ current is induced (site 3-like action). Interestingly, both effects take place in a voltage-dependent manner, producing a bell-shaped curve between ?80 and 0 mV, and they are absent in mammalian NaV channels. To the best of our knowledge, this is the first detailed report of peptide toxins with such a peculiar pharmacological behavior, clearly indicating that traditional classification of toxins according to their binding sites may not be as exclusive as previously assumed.
机译:蜘蛛毒液提供了对膜结合受体和离子通道的宽多样性的肽毒素的高度有价值的毒素。在这项工作中,我们报告了一种新颖的蜘蛛肽毒素的分离,生化分析和药理表征,指定β/δ-炔醇蛋白。这些毒素由36-38个氨基酸残基组成,源自姬松林漏斗网蜘蛛Agelena Orientalis的毒液。所提出的毒素显示出与其他已知毒素的相当大的氨基酸序列相似性,例如μ-炔醇蛋白,饼丁和δ-普拉特毒素 - 它来自相关的蜘蛛ageLenopsis aperta,hololenafta和旁瓣尿素病。 β/δ-毒素以独特的方式调制昆虫导航通道(DMNAV1 /脚石),具有受影响的激活和失活过程。活化的电压依赖性朝向更高超极化电位(类似于部位4毒素),诱导非灭活持久性Na +电流(位点3类似物)。有趣的是,这两种效果都以电压依赖性的方式进行,在哺乳动物NAV通道中不存在于α8和0mV之间产生钟形曲线。据我们所知,这是具有这种特殊药理学行为的肽毒素的第一份详细报告,清楚地​​表明根据其结合位点的传统毒素分类可能不是以前假定的。

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