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Chemical Punch Packed in Venoms Makes Centipedes Excellent Predators

机译:毒液包装的化学打孔机使C成为出色的捕食者

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摘要

Centipedes are excellent predatory arthropods that inject venom to kill or immobilize their prey. Although centipedes have long been known to be venomous, their venoms remain largely unexplored. The chemical components responsible for centipede predation and the functional mechanisms are unknown. Twenty-six neurotoxin-like peptides belonging to ten groups were identified from the centipede venoms, Scolopendra subspinipes mutilans L. Koch by peptidomics combined with transcriptome analysis, revealing the diversity of neurotoxins. These neurotoxins each contain two to four intramolecular disulfide bridges, and in most cases the disulfide framework is different from that found in neurotoxins from the venoms of spiders, scorpions, marine cone snails, sea anemones, and snakes (5S animals). Several neurotoxins contain potential insecticidal abilities, and they are found to act on voltage-gated sodium, potassium, and calcium channels, respectively. Although these neurotoxins are functionally similar to the disulfide-rich neurotoxins found in the venoms of 5S animals in that they modulate the activity of voltage-gated ion channels, in almost all cases the primary structures of the centipede venom peptides are unique. This represents an interesting case of convergent evolution in which different venomous animals have evolved different molecular strategies for targeting the same ion channels in prey and predators. Moreover, the high level of biochemical diversity revealed in this study suggests that centipede venoms might be attractive subjects for prospecting and screening for peptide candidates with potential pharmaceutical or agrochemical applications.
机译:are是极好的捕食性节肢动物,可以注入毒液杀死或固定猎物。尽管人们早就知道cent是有毒的,但是它们的毒液在很大程度上尚未被开发。负责cent捕食的化学成分和功能机制尚不清楚。通过肽组学与转录组分析相结合,从the毒液Scolopendra subspinipes mutilans L. Koch中鉴定出属于十组的26种神经毒素样肽,揭示了神经毒素的多样性。这些神经毒素各自包含两到四个分子内二硫键,在大多数情况下,二硫键的结构不同于蜘蛛,蝎子,海螺,海葵和蛇(5S动物)的毒液中的神经毒素。几种神经毒素具有潜在的杀虫能力,并且发现它们分别作用于电压门控的钠,钾和钙通道。尽管这些神经毒素在功能上类似于5S动物毒液中发现的富含二硫键的神经毒素,因为它们调节电压门控离子通道的活性,但是在几乎所有情况下,ipe毒液肽的主要结构都是独特的。这代表了一个有趣的融合进化案例,其中不同的有毒动物进化出了不同的分子策略来靶向猎物和掠食者中的相同离子通道。此外,这项研究中揭示的高水平的生化多样性表明,cent毒液可能是寻找和筛选具有潜在药物或农用化学用途的候选肽的诱人对象。

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