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量化动物蛋白结构域获得的机制。

Quantifying the mechanisms of domain gain in animal proteins.

机构信息

Wellcome Trust Sanger Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1SA, UK.

出版信息

Genome Biol. 2010;11(7):R74. doi: 10.1186/gb-2010-11-7-r74. Epub 2010 Jul 15.

Abstract

BACKGROUND

Protein domains are protein regions that are shared among different proteins and are frequently functionally and structurally independent from the rest of the protein. Novel domain combinations have a major role in evolutionary innovation. However, the relative contributions of the different molecular mechanisms that underlie domain gains in animals are still unknown. By using animal gene phylogenies we were able to identify a set of high confidence domain gain events and by looking at their coding DNA investigate the causative mechanisms.

RESULTS

Here we show that the major mechanism for gains of new domains in metazoan proteins is likely to be gene fusion through joining of exons from adjacent genes, possibly mediated by non-allelic homologous recombination. Retroposition and insertion of exons into ancestral introns through intronic recombination are, in contrast to previous expectations, only minor contributors to domain gains and have accounted for less than 1% and 10% of high confidence domain gain events, respectively. Additionally, exonization of previously non-coding regions appears to be an important mechanism for addition of disordered segments to proteins. We observe that gene duplication has preceded domain gain in at least 80% of the gain events.

CONCLUSIONS

The interplay of gene duplication and domain gain demonstrates an important mechanism for fast neofunctionalization of genes.

摘要

背景

蛋白质结构域是指在不同蛋白质中共享的蛋白质区域,通常在功能和结构上与蛋白质的其余部分独立。新的结构域组合在进化创新中起着主要作用。然而,动物中导致结构域获得的不同分子机制的相对贡献仍不清楚。通过使用动物基因系统发育,我们能够识别出一组高可信度的结构域获得事件,并通过观察它们的编码 DNA 来研究其因果机制。

结果

在这里,我们表明,真核生物蛋白中新结构域获得的主要机制可能是通过相邻基因的外显子连接发生基因融合,可能由非等位基因同源重组介导。与之前的预期相反,逆转录转座和通过内含子重组将外显子插入到祖先内含子中,分别仅占结构域获得的小部分,分别占高可信度结构域获得事件的不到 1%和 10%。此外,先前无编码区域的外显子化似乎是向蛋白质中添加无规片段的重要机制。我们观察到,在至少 80%的获得事件中,基因复制发生在结构域获得之前。

结论

基因复制和结构域获得的相互作用展示了基因快速新功能化的重要机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d849/2926785/8537fec3078f/gb-2010-11-7-r74-1.jpg

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