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NYN结构域:具有类PIN结构域折叠的新型预测核糖核酸酶。

The NYN domains: novel predicted RNAses with a PIN domain-like fold.

作者信息

Anantharaman Vivek, Aravind L

机构信息

National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland 20894, USA.

出版信息

RNA Biol. 2006 Jan-Mar;3(1):18-27. doi: 10.4161/rna.3.1.2548. Epub 2006 Jan 23.

Abstract

Using sensitive sequence profile searches and contextual information gleaned from domain architectures and predicted operons we identify a novel family of protein domains with predicted ribonuclease activity. These domains are found in the eukaryotic proteins typified by the Nedd4-binding protein 1 and the bacterial YacP-like proteins (Nedd4-BP1, YacP nucleases; NYN domains). We show that the NYN domain shares a common protein fold with two other previously characterized groups of nucleases, namely the PIN (PilT N-terminal) and FLAP/5' --> 3' exonuclease superfamilies. We also show that all these proteins share a common set of 4 acidic conserved residues that are predicted to constitute their active site. Based on the conservation of the acidic residues and structural elements we suggest that PIN and NYN domains are likely to bind only a single metal ion, unlike the FLAP/5' --> 3' exonuclease superfamily, which binds two metal ions. We also present evidence that the other conserved residues shared by all these three domains are likely to play critical roles in sensing the substrate and positioning the catalytic residues in the right conformation. Based on conserved gene neighborhoods we infer that the bacterial members are likely to be components of the processome/degradsome that process tRNAs or ribosomal RNAs. Eukaryotic versions appear to have undergone extensive functional diversification as suggested by the several distinctive multi-domain architectures showing fusions with various other RNA-binding domains like CCCH, PPR and KH domains. Interestingly, the eukaryotic NYN domains also show multiple fusions to the UBA domain, an ubiquitin-binding adaptor domain. This observation, together with the monoubiquitination of Nedd4-BP1 by the ubiquitin ligase Nedd4 suggests that the NYN domain proteins of eukaryotes are regulated by monoubiquitination. Given the localization of Nedd4-BP1 to punctuate nuclear bodies, it is likely that they are parts of nuclear RNA-processing complexes that are dependent on monoubiquitination for their assembly.

摘要

利用敏感的序列概况搜索以及从结构域架构和预测的操纵子中收集的上下文信息,我们鉴定出一个具有预测核糖核酸酶活性的新型蛋白质结构域家族。这些结构域存在于以Nedd4结合蛋白1为代表的真核蛋白质以及细菌YacP样蛋白中(Nedd4-BP1、YacP核酸酶;NYN结构域)。我们发现NYN结构域与另外两组先前已表征的核酸酶共享一种常见的蛋白质折叠,即PIN(PilT N端)和FLAP/5'→3'核酸外切酶超家族。我们还表明,所有这些蛋白质共享一组共同的4个酸性保守残基,预计这些残基构成它们的活性位点。基于酸性残基和结构元件的保守性,我们认为PIN和NYN结构域可能仅结合单个金属离子,这与结合两个金属离子的FLAP/5'→3'核酸外切酶超家族不同。我们还提供证据表明,这三个结构域共有的其他保守残基可能在识别底物以及将催化残基定位到正确构象中发挥关键作用。基于保守的基因邻域,我们推断细菌成员可能是加工tRNA或核糖体RNA的加工体/降解体的组成部分。真核生物版本似乎经历了广泛的功能多样化,这从几个独特的多结构域架构中可以看出,这些架构显示与各种其他RNA结合结构域如CCCH、PPR和KH结构域融合。有趣的是,真核生物的NYN结构域还显示与UBA结构域多次融合,UBA结构域是一种泛素结合衔接结构域。这一观察结果,连同泛素连接酶Nedd4对Nedd4-BP1的单泛素化,表明真核生物的NYN结构域蛋白受单泛素化调节。鉴于Nedd4-BP1定位于点状核体,它们很可能是依赖单泛素化进行组装的核RNA加工复合物的一部分。

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