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Genetic mechanisms of scorpion venom peptide diversification

机译:蝎毒肽多样性的遗传机制

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摘要

The diversity of scorpion venom peptides is well shown by the presence of about 400 such polypeptides with or without disulfide bonds. Scorpion toxins with disulfide bonds present a variety of sequence features and pharmacological functions by affecting different ion channels, while the venom peptides without disulfide bonds represent a new subfamily, having much lower sequence homology among each other and different functions (e.g. bradykinin-potentiating, antimicrobial, molecular cell signal initiating and immune modulating). Interestingly, all scorpion venom peptides with divergent functions may have evolved from a common ancestor gene. Over the lengthy evolutionary time, the diversification of scorpion venom peptides evolved through polymorphism, duplication, trans-splicing, or alternative splicing at the gene level. In order to completely clarify the diversity of scorpion toxins and toxin-like peptides, toxinomics (genomics and proteomics of scorpion toxins and toxin-like peptides) are expected to greatly advance in the near future.
机译:通过存在约400个具有或不具有二硫键的多肽,蝎毒肽的多样性得到了很好的证明。具有二硫键的蝎毒素通过影响不同的离子通道而具有多种序列特征和药理功能,而没有二硫键的毒肽代表了一个新的亚科,彼此之间的序列同源性低得多,并且具有不同的功能(例如缓激肽增强,抗菌药) ,分子细胞信号启动和免疫调节)。有趣的是,所有具有发散功能的蝎毒肽可能都是从共同的祖先基因进化而来的。在漫长的进化过程中,蝎毒肽的多样化是通过在基因水平上进行多态性,复制,反式剪接或选择性剪接而演变而来的。为了完全弄清蝎子毒素和毒素样肽的多样性,预期在不久的将来毒理学(蝎子毒素和毒素样肽的基因组学和蛋白质组学)将大大发展。

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