首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Melt With This Kiss: Paralyzing and Liquefying Venom of The Assassin Bug Pristhesancus plagipennis (Hemiptera: Reduviidae)
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Melt With This Kiss: Paralyzing and Liquefying Venom of The Assassin Bug Pristhesancus plagipennis (Hemiptera: Reduviidae)

机译:用这个吻融化:刺客的臭虫Pristhesancus plagipennis的瘫痪和液化毒液(半翅目:u科)

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摘要

Assassin bugs (Hemiptera: Heteroptera: Reduviidae) are venomous insects, most of which prey on invertebrates. Assassin bug venom has features in common with venoms from other animals, such as paralyzing and lethal activity when injected, and a molecular composition that includes disulfide-rich peptide neurotoxins. Uniquely, this venom also has strong liquefying activity that has been hypothesized to facilitate feeding through the narrow channel of the proboscis—a structure inherited from sap- and phloem-feeding phytophagous hemipterans and adapted during the evolution of Heteroptera into a fang and feeding structure. However, further understanding of the function of assassin bug venom is impeded by the lack of proteomic studies detailing its molecular composition.By using a combined transcriptomic/proteomic approach, we show that the venom proteome of the harpactorine assassin bug Pristhesancus plagipennis includes a complex suite of >100 proteins comprising disulfide-rich peptides, CUB domain proteins, cystatins, putative cytolytic toxins, triabin-like protein, odorant-binding protein, S1 proteases, catabolic enzymes, putative nutrient-binding proteins, plus eight families of proteins without homology to characterized proteins. S1 proteases, CUB domain proteins, putative cytolytic toxins, and other novel proteins in the 10–16-kDa mass range, were the most abundant venom components. Thus, in addition to putative neurotoxins, assassin bug venom includes a high proportion of enzymatic and cytolytic venom components likely to be well suited to tissue liquefaction. Our results also provide insight into the trophic switch to blood-feeding by the kissing bugs (Reduviidae: Triatominae). Although some protein families such as triabins occur in the venoms of both predaceous and blood-feeding reduviids, the composition of venoms produced by these two groups is revealed to differ markedly. These results provide insights into the venom evolution in the insect suborder Heteroptera.
机译:刺客臭虫(半翅目:异翅目:Reduviidae)是有毒昆虫,其中大多数捕食无脊椎动物。刺客小虫的毒液具有与其他动物的毒液相同的特征,例如注射时会麻痹和致死,其分子成分包括富含二硫键的肽类神经毒素。独特的是,该毒液还具有很强的液化活性,据推测可以促进通过长鼻的狭窄通道进食-这种结构是从食汁和韧皮部食性食虫性半翅目动物继承而来的,并且在异翅目进化为犬齿和进食结构时得到了适应。然而,由于缺乏详细描述其分子组成的蛋白质组学研究,因此无法进一步了解刺客毒液的功能。通过组合的转录组/蛋白质组学方法,我们表明,鱼pac素刺客bug毒液Pristhesancus plagipennis的毒液蛋白质组包括一个复杂的套件超过100种蛋白质,包括富含二硫键的肽,CUB域蛋白质,胱抑素,推定的细胞溶解毒素,类Triabin蛋白,气味结合蛋白,S1蛋白酶,分解代谢酶,推定的营养结合蛋白,以及八个与特征蛋白。 S1蛋白酶,CUB域蛋白,推定的溶细胞毒素和其他新颖的蛋白质(质量范围为10-16kDa)是最丰富的毒液成分。因此,除假定的神经毒素外,刺客小虫的毒液还包含高比例的酶和细胞溶解毒液成分,很可能非常适合组织液化。我们的结果还提供了对由接吻臭虫(Reduviidae:Triatominae)进行的营养转变为补血的见解。尽管一些蛋白质家族(例如三联蛋白)存在于早熟和补血的类黄酮的毒液中,但是这两组所产生的毒液的组成显着不同。这些结果提供了深入了解昆虫亚目异翅目中毒液的进化。

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