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Low complexity regions in the proteins of prokaryotes perform important functional roles and are highly conserved

机译:原核生物蛋白中的低复杂性区域表现了重要的功能作用,并且是高度保守的

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We provide the first high-throughput analysis of the properties and functional role of Low Complexity Regions (LCRs) in more than 1500 prokaryotic and phage proteomes. We observe that, contrary to a widespread belief based on older and sparse data, LCRs actually have a significant, persistent and highly conserved presence and role in many and diverse prokaryotes. Their specific amino acid content is linked to proteins with certain molecular functions, such as the binding of RNA, DNA, metal-ions and polysaccharides. In addition, LCRs have been repeatedly identified in very ancient, and usually highly expressed proteins of the translation machinery. At last, based on the amino acid content enriched in certain categories, we have developed a neural network web server to identify LCRs and accurately predict whether they can bind nucleic acids, metal-ions or are involved in chaperone functions. An evaluation of the tool showed that it is highly accurate for eukaryotic proteins as well.
机译:我们在超过1500个原核和噬菌体蛋白质组中提供了低复杂性地区(LCR)的性质和功能作用的第一种高通量分析。 我们观察到,违背基于较旧的和稀疏数据的广泛信念,LCR实际上具有重要,持续和高度保守的存在和在许多和不同的原核生物中的作用。 它们的特定氨基酸含量与具有某些分子官能的蛋白质连接,例如RNA,DNA,金属离子和多糖的结合。 此外,LCR在非常古老的,通常是高表达的翻译机械的蛋白质中已经反复鉴定出来。 最后,基于富含某些类别的氨基酸含量,我们开发了一种神经网络网络服务器,用于鉴定LCRS,并准确地预测它们是否可以结合核酸,金属 - 离子或参与伴侣功能。 对该工具的评估表明它也非常精确为真核蛋白。

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