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Evolution of an RNP assembly system: A minimal SMN complex facilitates formation of UsnRNPs in Drosophila melanogaster

机译:RNP装配系统的演变:最小的SMN复合物促进果蝇中UsnRNP的形成

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In vertebrates, assembly of spliceosomal uridine-rich small nuclear ribonucleoproteins (UsnRNPs) is mediated by the SMN complex, a macromolecular entity composed of the proteins SMN and Gemins 2-8. Here we have studied the evolution of this machinery using complete genome assemblies of multiple model organisms. The SMN complex has gained complexity in evolution by a blockwise addition of Gemins onto an ancestral core complex composed of SMN and Gemin2. In contrast to this overall evolutionary trend to more complexity in metazoans, orthologs of most Gemins are missing in dipterans. In accordance with these bioinformatic data a previously undescribed biochemical purification strategy elucidated that the dipteran Drosophila melanogaster contains an SMN complex of remarkable simplicity. Surprisingly, this minimal complex not only mediates the assembly reaction in a manner very similar to its vertebrate counterpart, but also prevents misassem-bly onto nontarget RNAs. Our data suggest that only a minority of Gemins are required for the assembly reaction per se, whereas others may serve additional functions in the context of UsnRNP biogenesis. The evolution of the SMN complex is an interesting example of how the simplification of a biochemical process contributes to genome compaction.
机译:在脊椎动物中,剪接体富含尿苷的小核糖核糖核蛋白(UsnRNPs)的组装是由SMN复合物介导的,SMN复合物是由蛋白质SMN和Gemins 2-8组成的大分子实体。在这里,我们使用多种模型生物的完整基因组组装研究了这种机器的进化。通过将Gemins逐块添加到由SMN和Gemin2组成的祖先核心复合体中,SMN复合体在演化中变得越来越复杂。与这种整体进化趋势向后生动物的复杂性相反,多数双子星的直系同源物在二倍体动物中缺失。根据这些生物信息学数据,先前未描述的生化纯化策略阐明了二萜果蝇果蝇含有极其简单的SMN复合物。令人惊讶的是,这种最小的复合物不仅以与脊椎动物类似的方式介导组装反应,而且还防止了向非靶RNA的错误组装。我们的数据表明,组装反应本身仅需要少数Gemins,而在UsnRNP生物发生的背景下,其他Gemins可能具有其他功能。 SMN复合体的进化是一个有趣的例子,说明生化过程的简化如何促进基因组紧缩。

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