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Dynamic evolution of venom proteins in squamate reptiles

机译:鳞状爬行动物中毒液蛋白的动态演变

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摘要

Phylogenetic analyses of toxin gene families have revolutionised our understanding of the origin and evolution of reptile venoms, leading to the current hypothesis that venom evolved once in squamate reptiles. However, because of a lack of homologous squamate non-toxin sequences, these conclusions rely on the implicit assumption that recruitments of protein families into venom are both rare and irreversible. Here we use sequences of homologous non-toxin proteins from two snake species to test these assumptions. Phylogenetic and ancestral-state analyses revealed frequent nesting of 'physiological' proteins within venom toxin clades, suggesting early ancestral recruitment into venom followed by reverse recruitment of toxins back to physiological roles. These results provide evidence that protein recruitment into venoms from physiological functions is not a one-way process, but dynamic, with reversal of function and/or co-expression of toxins in different tissues. This requires a major reassessment of our previous understanding of how animal venoms evolve.
机译:毒素基因家族的系统发育分析彻底改变了我们对爬行动物毒液的起源和进化的理解,从而导致目前的假说,即在鳞状爬行动物中毒液曾经进化。然而,由于缺乏同源的鳞状非毒素序列,这些结论基于隐含的假设,即蛋白质家族向毒液中的募集既罕见又不可逆。在这里,我们使用来自两种蛇的同源非毒素蛋白序列来检验这些假设。系统发生和祖先状态分析显示,“生理”蛋白在毒液毒素进化枝中频繁嵌套,这表明先祖先募集入毒液,然后将毒素反向募集回到生理作用。这些结果提供了证据,表明蛋白质从生理功能募集到毒液中不是一个单向过程,而是动态的,具有功能逆转和/或毒素在不同组织中的共表达。这需要对我们先前对动物毒液如何进化的认识进行重大的重新评估。

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