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黄斑园蛛(Cheiracanthium punctorium)基因结构为杀虫双结构域结蛋白毒素的进化提供线索。

Structure of the yellow sac spider Cheiracanthium punctorium genes provides clues to evolution of insecticidal two-domain knottin toxins.

作者信息

Sachkova M Y, Slavokhotova A A, Grishin E V, Vassilevski A A

机构信息

M.M. Shemyakin and Yu.A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russian Federation.

出版信息

Insect Mol Biol. 2014 Aug;23(4):527-38. doi: 10.1111/imb.12097. Epub 2014 Apr 10.

Abstract

Yellow sac spiders (Cheiracanthium punctorium, family Miturgidae) are unique in terms of venom composition, because, as we show here, two-domain toxins have replaced the usual one-domain peptides as the major constituents. We report the structure of the two-domain Che. punctorium toxins (CpTx), along with the corresponding cDNA and genomic DNA sequences. At least three groups of insecticidal CpTx were identified, each consisting of several members. Unlike many cone snail and snake toxins, accelerated evolution is not typical of cptx genes, which instead appear to be under the pressure of purifying selection. Both CpTx modules present the inhibitor cystine knot (ICK), or knottin signature; however, the sequence similarity between the domains is low. Conversely, notable similarity was found between separate domains of CpTx and one-domain toxins from spiders of the Lycosidae family. The observed chimerism is a landmark of exon shuffling events, but in contrast to many families of multidomain protein genes no introns were found in the cptx genes. Considering the possible scenarios, we suggest that an early transcription-mediated fusion event between two related one-domain toxin genes led to the emergence of a primordial cptx-like sequence. We conclude that evolution of toxin variability in spiders appears to be quite different from other venomous animals.

摘要

黄囊蛛(Cheiracanthium punctorium,密蛛科)在毒液成分方面独具特色,因为正如我们在此所展示的,两结构域毒素已取代常见的单结构域肽成为主要成分。我们报告了两结构域的黄囊蛛毒素(CpTx)的结构,以及相应的cDNA和基因组DNA序列。至少鉴定出了三组具有杀虫活性的CpTx,每组由几个成员组成。与许多芋螺和蛇毒素不同,加速进化并非cptx基因的典型特征,相反,它们似乎受到纯化选择的压力。两个CpTx模块均呈现出抑制性胱氨酸结(ICK)或结蛋白特征;然而,各结构域之间的序列相似性较低。相反,在CpTx的单个结构域与狼蛛科蜘蛛的单结构域毒素之间发现了显著的相似性。观察到的嵌合现象是外显子洗牌事件的一个标志,但与许多多结构域蛋白质基因家族不同的是,在cptx基因中未发现内含子。考虑到可能的情况,我们认为两个相关的单结构域毒素基因之间早期的转录介导融合事件导致了原始的类cptx序列的出现。我们得出结论,蜘蛛毒素变异性的进化似乎与其他有毒动物有很大不同。

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