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眼镜蛇科蛇毒三指毒素的分子进化与系统发育

Molecular evolution and phylogeny of elapid snake venom three-finger toxins.

作者信息

Fry B G, Wüster W, Kini R M, Brusic V, Khan A, Venkataraman D, Rooney A P

机构信息

Australian Venom Research Unit, Department of Pharmacology, University of Melbourne, Parkville, Vic 3010, Australia.

出版信息

J Mol Evol. 2003 Jul;57(1):110-29. doi: 10.1007/s00239-003-2461-2.

Abstract

Animal venom components are of considerable interest to researchers across a wide variety of disciplines, including molecular biology, biochemistry, medicine, and evolutionary genetics. The three-finger family of snake venom peptides is a particularly interesting and biochemically complex group of venom peptides, because they are encoded by a large multigene family and display a diverse array of functional activities. In addition, understanding how this complex and highly varied multigene family evolved is an interesting question to researchers investigating the biochemical diversity of these peptides and their impact on human health. Therefore, the purpose of our study was to investigate the long-term evolutionary patterns exhibited by these snake venom toxins to understand the mechanisms by which they diversified into a large, biochemically diverse, multigene family. Our results show a much greater diversity of family members than was previously known, including a number of subfamilies that did not fall within any previously identified groups with characterized activities. In addition, we found that the long-term evolutionary processes that gave rise to the diversity of three-finger toxins are consistent with the birth-and-death model of multigene family evolution. It is anticipated that this "three-finger toxin toolkit" will prove to be useful in providing a clearer picture of the diversity of investigational ligands or potential therapeutics available within this important family.

摘要

动物毒液成分引起了包括分子生物学、生物化学、医学和进化遗传学在内的众多学科研究人员的极大兴趣。蛇毒肽的三指家族是一类特别有趣且生物化学性质复杂的毒液肽,因为它们由一个庞大的多基因家族编码,并展现出多种多样的功能活性。此外,对于研究这些肽的生物化学多样性及其对人类健康影响的研究人员来说,了解这个复杂且高度多样的多基因家族是如何进化的是一个有趣的问题。因此,我们研究的目的是探究这些蛇毒毒素所展现出的长期进化模式,以了解它们如何分化成一个庞大的、生物化学性质多样的多基因家族的机制。我们的研究结果表明,家族成员的多样性比之前所知的要大得多,包括一些不属于任何先前已鉴定出的具有特定活性组别的亚家族。此外,我们发现导致三指毒素多样性的长期进化过程与多基因家族进化的生死模型一致。预计这个“三指毒素工具包”将有助于更清晰地呈现这个重要家族中可用于研究的配体或潜在治疗药物的多样性。

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