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Modular toxin from the lynx spider Oxyopes takobius: Structure of spiderine domains in solution and membrane‐mimicking environment

机译:来自山猫蜘蛛Oxyopes takobius的模块化毒素:溶液和膜模拟环境中蜘蛛网结构域的结构

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摘要

We have recently demonstrated that a common phenomenon in evolution of spider venom composition is the emergence of so‐called modular toxins consisting of two domains, each corresponding to a “usual” single‐domain toxin. In this article, we describe the structure of two domains that build up a modular toxin named spiderine or OtTx1a from the venom of Oxyopes takobius. Both domains were investigated by solution NMR in water and detergent micelles used to mimic membrane environment. The N‐terminal spiderine domain OtTx1a‐AMP (41 amino acid residues) contains no cysteines. It is disordered in aqueous solution but in micelles, it assumes a stable amphiphilic structure consisting of two α‐helices separated by a flexible linker. On the contrary, the C‐terminal domain OtTx1a‐ICK (59 residues) is a disulfide‐rich polypeptide reticulated by five S–S bridges. It presents a stable structure in water and its core is the inhibitor cystine knot (ICK) or knottin motif that is common among single‐domain neurotoxins. OtTx1a‐ICK structure is the first knottin with five disulfide bridges and it represents a good reference for the whole oxytoxin family. The affinity of both domains to membranes was measured with NMR using titration by liposome suspensions. In agreement with biological tests, OtTx1a‐AMP was found to show high membrane affinity explaining its potent antimicrobial properties.
机译:最近,我们证明了蜘蛛毒成分演变中的一个普遍现象是出现了所谓的模块毒素,该毒素由两个域组成,每个域对应一个“通常的”单域毒素。在本文中,我们描述了两个结构域的结构,这两个结构域从塔可比牛(Oxyopes takobius)的毒液中构建了称为蜘蛛毒素或OtTx1a的模块毒素。通过在溶液中使用溶液NMR来模拟这两个域,并在模拟膜环境的去污剂胶束中进行了研究。 N末端蜘蛛网域OtTx1a-AMP(41个氨基酸残基)不包含半胱氨酸。它在水溶液中是无序的,但在胶束中,它假定是一个稳定的两亲结构,该结构由两个由柔性连接子隔开的α螺旋组成。相反,C末端结构域OtTx1a‐ICK(59个残基)是由5个S–S桥接形成的富含二硫键的多肽。它在水中具有稳定的结构,其核心是单域神经毒素中常见的抑制剂胱氨酸结(ICK)或结蛋白基序。 OtTx1a‐ICK结构是具有五个二硫键的第一个结蛋白,它代表了整个氧毒素家族的良好参考。使用脂质体悬浮液的滴定,通过NMR测量两个结构域对膜的亲和力。与生物学测试一致,发现OtTx1a-AMP具有很高的膜亲和力,说明了其强大的抗菌性能。

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