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首页> 外文期刊>Journal of proteome research >Specialisation of the venom gland proteome in predatory cone snails reveals functional diversification of the conotoxin biosynthetic pathway
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Specialisation of the venom gland proteome in predatory cone snails reveals functional diversification of the conotoxin biosynthetic pathway

机译:捕食性锥蜗牛中毒腺蛋白质组的专业化揭示了芋螺毒素生物合成途径的功能多样化

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摘要

Conotoxins, venom peptides from marine cone snails, diversify rapidly as speciation occurs. It has been suggested that each species can synthesize between 1000 and 1900 different toxins with little to no interspecies overlap. Conotoxins exhibit an unprecedented degree of post-translational modifications, the most common one being the formation of disulfide bonds. Despite the great diversity of structurally complex peptides, little is known about the glandular proteins responsible for their biosynthesis and maturation. Here, proteomic interrogations on the Conus venom gland led to the identification of novel glandular proteins of potential importance for toxin synthesis and secretion. A total of 161 and 157 proteins and protein isoforms were identified in the venom glands of Conus novaehollandiae and Conus victoriae, respectively. Interspecies differences in the venom gland proteomes were apparent. A large proportion of the proteins identified function in protein/peptide translation, folding, and protection events. Most intriguingly, however, we demonstrate the presence of a multitude of isoforms of protein disulfide isomerase (PDI), the enzyme catalyzing the formation and isomerization of the native disulfide bond. Investigating whether different PDI isoforms interact with distinct toxin families will greatly advance our knowledge on the generation of cone snail toxins and disulfide-rich peptides in general.
机译:海洋毒素蜗牛产生的毒素,毒素,随着形成物种而迅速多样化。有人提出,每个物种可以合成1000至1900种不同的毒素,几乎没有种间重叠。芋螺毒素表现出前所未有的翻译后修饰程度,最常见的是二硫键的形成。尽管结构复杂的肽种类繁多,但对于负责其生物合成和成熟的腺体蛋白知之甚少。在这里,对锥状毒液腺的蛋白质组学研究导致鉴定出对毒素合成和分泌潜在重要的新型腺蛋白。分别在新圆锥体和维多利亚圆锥体的毒腺中鉴定出总共161和157种蛋白质和蛋白质同工型。种间差异在毒腺蛋白质组中是明显的。鉴定出的大部分蛋白质在蛋白质/肽翻译,折叠和保护事件中起作用。然而,最有趣的是,我们证明了蛋白质二硫键异构酶(PDI)的多种同工型的存在,该酶催化天然二硫键的形成和异构化。研究不同的PDI同工型是否与不同的毒素家族相互作用,将极大地提高我们对圆锥蜗牛毒素和富含二硫键肽的产生的认识。

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