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Gene fusion/fission is a major contributor to evolution of multi-domain bacterial proteins

机译:基因融合/分裂是多域细菌蛋白进化的主要因素

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摘要

Most proteins comprise one or several domains. New domain architectures can be created by combining previously existing domains. The elementary events that create new domain architectures may be categorized into three classes, namely domain(s) insertion or deletion (indel), exchange and repetition. Using 'DomainTeam', a tool dedicated to the search for microsyntenies of domains, we quantified the relative contribution of these events. This tool allowed us to collect homologous bacterial genes encoding proteins that have obviously evolved by modular assembly of domains. We show that indels are the most frequent elementary events and that they occur in most cases at either the N- or C-terminus of the proteins. As revealed by the genomic neighbourhood/context of the corresponding genes, we show that a substantial number of these terminal indels are the consequence of gene fusions/fissions. We provide evidence showing that the contribution of gene fusion/fission to the evolution of multi-domain bacterial proteins is lower-bounded by 27% and upper-bounded by 64%. We conclude that gene fusion/fission is a major contributor to the evolution of multi-domain bacterial proteins.
机译:大多数蛋白质包含一个或几个域。可以通过组合先前存在的域来创建新的域体系结构。可以将创建新域架构的基本事件分为三类,即域插入或删除(插入/删除),交换和重复。通过使用“ DomainTeam”(专用于搜索域的微观结构的工具),我们可以量化这些事件的相对贡献。该工具使我们能够收集编码蛋白质的同源细菌基因,这些蛋白质显然已通过域的模块组装而进化。我们表明,插入缺失是最常见的基本事件,并且它们在大多数情况下都发生在蛋白质的N端或C端。正如相应基因的基因组邻域/背景所揭示的,我们表明,这些末端插入/缺失的相当一部分是基因融合/分裂的结果。我们提供的证据表明,基因融合/裂变对多域细菌蛋白进化的贡献低限为27%,高限为64%。我们得出结论,基因融合/裂变是多域细菌蛋白进化的主要因素。

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