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首页> 外文期刊>Molecular Microbiology >Displacement of cellular proteins by functional analogues from plasmids or viruses could explain puzzling phylogenies of many DNA informational proteins.
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Displacement of cellular proteins by functional analogues from plasmids or viruses could explain puzzling phylogenies of many DNA informational proteins.

机译:质粒或病毒的功能类似物置换细胞蛋白可能解释了许多DNA信息蛋白的令人费解的系统发育。

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Comparative genomics has revealed many examples in which the same function is performed by unrelated or distantly related proteins in different cellular lineages. In some cases, this has been explained by the replacement of the original gene by a paralogue or non-homologue, a phenomenon known as non-orthologous gene displacement. Such gene displacement probably occurred early on in the history of proteins involved in DNA replication, repair, recombination and transcription (DNA informational proteins), i.e. just after the divergence of archaea, bacteria and eukarya from the last universal cellular ancestor (LUCA). This would explain why many DNA informational proteins are not orthologues between the three domains of life. However, in many cases, the origin of the displacing genes is obscure, as they do not even have detectable homologues in another domain. I suggest here that the original cellular DNA informational proteins have often been replaced by proteins of viral or plasmid origin. As viral and plasmid-encoded proteins are usually very divergent from their cellular counterparts, this would explain the puzzling phylogenies and distribution of many DNA informational proteins between the three domains of life.
机译:比较基因组学揭示了许多实例,其中相同的功能由不同细胞谱系中的不相关或遥远相关的蛋白质执行。在某些情况下,这可以通过旁系同源或非同源替代原始基因来解释,这种现象称为非直系同源基因置换。这种基因置换可能发生在涉及DNA复制,修复,重组和转录的蛋白质(DNA信息蛋白质)的历史的早期,即在古细菌,细菌和真核生物从最后一个通用细胞祖先(LUCA)分离之后。这可以解释为什么许多DNA信息蛋白不是生命的三个结构域之间的直向同源物。但是,在许多情况下,置换基因的起源是晦涩的,因为它们甚至在另一个域中都没有可检测到的同源物。我在这里建议原始的细胞DNA信息蛋白经常被病毒或质粒来源的蛋白取代。由于病毒和质粒编码的蛋白质通常与它们的细胞对应物差异很大,因此这可以解释令人费解的系统发育以及生活中三个域之间许多DNA信息蛋白的分布。

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