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Enter the Dragon: The Dynamic and Multifunctional Evolution of Anguimorpha Lizard Venoms

机译:进入龙:Anguimorpha蜥蜴毒液的动态和多功能进化

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摘要

While snake venoms have been the subject of intense study, comparatively little work has been done on lizard venoms. In this study, we have examined the structural and functional diversification of anguimorph lizard venoms and associated toxins, and related these results to dentition and predatory ecology. Venom composition was shown to be highly variable across the 20 species of Heloderma, Lanthanotus, and Varanus included in our study. While kallikrein enzymes were ubiquitous, they were also a particularly multifunctional toxin type, with differential activities on enzyme substrates and also ability to degrade alpha or beta chains of fibrinogen that reflects structural variability. Examination of other toxin types also revealed similar variability in their presence and activity levels. The high level of venom chemistry variation in varanid lizards compared to that of helodermatid lizards suggests that venom may be subject to different selection pressures in these two families. These results not only contribute to our understanding of venom evolution but also reveal anguimorph lizard venoms to be rich sources of novel bioactive molecules with potential as drug design and development lead compounds.
机译:尽管蛇毒一直是研究的重点,但对蜥蜴毒的研究却很少。在这项研究中,我们研究了变形蜥蜴毒液和相关毒素的结构和功能多样性,并将这些结果与牙列和掠食性生态联系起来。毒液的组成在我们研究中包括的Heloderma,Lanthanantus和Varanus的20个物种中表现出高度可变性。尽管激肽释放酶普遍存在,但它们还是一种特别多功能的毒素类型,在酶底物上具有不同的活性,还具有降解纤维蛋白原的α或β链的能力,这反映了结构变异性。对其他毒素类型的检查还显示出它们的存在和活性水平也存在类似的变异性。与类皮蜥蜴相比,瓦拉尼蜥蜴的毒液化学变化较高,这表明在这两个家族中,毒液可能受到不同的选择压力。这些结果不仅有助于我们理解毒液的进化,而且还揭示了蜥蜴蜥蜴毒液是新型生物活性分子的丰富来源,具有作为药物设计和开发先导化合物的潜力。

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