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结构域究竟有多通用?

Just how versatile are domains?

作者信息

Weiner January, Moore Andrew D, Bornberg-Bauer Erich

机构信息

Institute for Evolution and Biodiversity, Evolutionary Bioinformatics Group, Westphalian Wilhelms-University, Münster, Germany.

出版信息

BMC Evol Biol. 2008 Oct 14;8:285. doi: 10.1186/1471-2148-8-285.

Abstract

BACKGROUND

Creating new protein domain arrangements is a frequent mechanism of evolutionary innovation. While some domains always form the same combinations, others form many different arrangements. This ability, which is often referred to as versatility or promiscuity of domains, its a random evolutionary model in which a domain's promiscuity is based on its relative frequency of domains.

RESULTS

We show that there is a clear relationship across genomes between the promiscuity of a given domain and its frequency. However, the strength of this relationship differs for different domains. We thus redefine domain promiscuity by defining a new index, DV I ("domain versatility index"), which eliminates the effect of domain frequency. We explore links between a domain's versatility, when unlinked from abundance, and its biological properties.

CONCLUSION

Our results indicate that domains occurring as single domain proteins and domains appearing frequently at protein termini have a higher DV I. This is consistent with previous observations that the evolution of domain re-arrangements is primarily driven by fusion of pre-existing arrangements and single domains as well as loss of domains at protein termini. Furthermore, we studied the link between domain age, defined as the first appearance of a domain in the species tree, and the DV I. Contrary to previous studies based on domain promiscuity, it seems as if the DV I is age independent. Finally, we find that contrary to previously reported findings, versatility is lower in Eukaryotes. In summary, our measure of domain versatility indicates that a random attachment process is sufficient to explain the observed distribution of domain arrangements and that several views on domain promiscuity need to be revised.

摘要

背景

创造新的蛋白质结构域排列是进化创新的常见机制。虽然一些结构域总是形成相同的组合,但其他结构域则形成许多不同的排列。这种能力,通常被称为结构域的多功能性或混杂性,是一种随机进化模型,其中结构域的混杂性基于其相对频率。

结果

我们表明,在整个基因组中,给定结构域的混杂性与其频率之间存在明显的关系。然而,这种关系的强度因不同的结构域而异。因此,我们通过定义一个新的指数DVI(“结构域多功能性指数”)来重新定义结构域混杂性,该指数消除了结构域频率的影响。我们探讨了结构域的多功能性(与丰度无关时)与其生物学特性之间的联系。

结论

我们的结果表明,作为单结构域蛋白出现的结构域以及在蛋白质末端频繁出现的结构域具有更高的DVI。这与先前的观察结果一致,即结构域重排的进化主要由先前存在的排列和单结构域的融合以及蛋白质末端结构域的丢失驱动。此外,我们研究了结构域年龄(定义为结构域在物种树中的首次出现)与DVI之间的联系。与先前基于结构域混杂性的研究相反,DVI似乎与年龄无关。最后,我们发现与先前报道的结果相反,真核生物中的多功能性较低。总之,我们对结构域多功能性的衡量表明,一个随机的附着过程足以解释观察到的结构域排列分布,并且需要对关于结构域混杂性的几种观点进行修正。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd74/2588589/45ef8f222041/1471-2148-8-285-1.jpg

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