首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Positively selected sites of scorpion depressant toxins: Possible roles in toxin functional divergence
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Positively selected sites of scorpion depressant toxins: Possible roles in toxin functional divergence

机译:蝎抑制毒素的阳性位点:在毒素功能差异中的可能作用

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Scorpion depressant toxins represent a distinct pharmacological group of sodium channel neurotoxins, identified by their preferential ability in induction of depressant and flaccid paralysis of insects. However, recent observations that some members in this group exhibit anti-mammal activity raise an interesting evolutionary question of whether it is a consequence of adaptive evolution to the early radiation of mammals on earth. By employing the maximum likelihood method, we provided convincing statistical evidence in favor of positive selection driving the evolution of the depressant toxins, and found that two of three positively selected sites are located on the functional surface of the toxins. A complex model of the scorpion depressant toxin LqhIT2 binding to insect sodium channel alpha-subunit (DmNav1) was constructed by structural bioinformatics approaches which highlights a possible direct interaction between these two sites and insect sodium channels. Our work presented here thus suggests that accelerated substitutions in these site residues could offer an evolutionary advantage for these toxins to adapt different channels from diverse origins. (C) 2007 Elsevier Ltd. All rights reserved.
机译:蝎抑制剂是钠通道神经毒素的一个独特的药理学类别,其通过诱导昆虫的抑制剂和松弛性麻痹的优先能力来确定。但是,最近的观察结果表明该组中的某些成员具有抗哺乳动物活性,这提出了一个有趣的进化问题,即这是否是对哺乳动物早期辐射适应性进化的结果。通过采用最大似然法,我们提供了令人信服的统计证据,支持正选择驱动抑郁毒素的进化,并发现三个正选择位点中的两个位于毒素的功能表面上。通过结构生物信息学方法构建了蝎子抑制剂毒素LqhIT2与昆虫钠通道α-亚基(DmNav1)结合的复杂模型,该模型突出了这两个位点与昆虫钠通道之间可能的直接相互作用。因此,我们在这里提出的工作表明,这些位点残基中的加速取代可以为这些毒素适应来自不同来源的不同通道提供进化优势。 (C)2007 Elsevier Ltd.保留所有权利。

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