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脊椎动物E1/U17小核仁核糖核蛋白颗粒

The vertebrate E1/U17 small nucleolar ribonucleoprotein particle.

作者信息

Eliceiri George L

机构信息

Department of Pathology, St. Louis University School of Medicine, St. Louis, Missouri 63104-1028, USA.

出版信息

J Cell Biochem. 2006 Jun 1;98(3):486-95. doi: 10.1002/jcb.20821.

Abstract

Each of the many different box H/ACA ribonucleoprotein particles (RNPs) present in eukaryotes and archaea consists of four common core proteins and one specific H/ACA small RNA, which bears the sequence elements H (ANANNA) and ACA. Most of the H/ACA RNPs are small nucleolar RNPs (snoRNPs), which are localized in nucleoli, and are one of the two major classes of snoRNPs. Most H/ACA RNPs direct pseudouridine synthesis in pre-rRNA and other RNAs. One H/ACA small nucleolar RNA (snoRNA), vertebrate E1/U17 (snR30 in yeast), is required for pre-rRNA cleavage processing that generates mature 18S rRNA. E1 snoRNA is encoded in introns of protein-coding genes, and the evidence suggests that human E1 RNA undergoes uridine insertional RNA editing. The vertebrate E1 RNA consensus secondary structure shows several features that are absent in other box H/ACA snoRNAs. The available UV-induced RNA-protein crosslinking results suggest that the E1 snoRNP is asymmetrical in vertebrate cells, in contrast to other H/ACA snoRNPs. The vertebrate E1 snoRNP in cells is surprisingly complex: (i) E1 RNA contacts directly and specifically several proteins which do not appear to be any of the H/ACA RNP four core proteins; and (ii) multiple E1 RNA sites are needed for E1 snoRNP formation, E1 RNA stability, and E1 RNA-protein direct interactions.

摘要

真核生物和古细菌中存在的许多不同的盒式H/ACA核糖核蛋白颗粒(RNP),每一个都由四种常见的核心蛋白和一种特定的H/ACA小RNA组成,该小RNA带有序列元件H(ANANNA)和ACA。大多数H/ACA RNP是小核仁RNP(snoRNP),定位于核仁,是两类主要的snoRNP之一。大多数H/ACA RNP指导前体rRNA和其他RNA中的假尿苷合成。一种H/ACA小核仁RNA(snoRNA),即脊椎动物E1/U17(酵母中的snR30),是产生成熟18S rRNA的前体rRNA切割加工所必需的。E1 snoRNA编码于蛋白质编码基因的内含子中,证据表明人类E1 RNA经历尿苷插入RNA编辑。脊椎动物E1 RNA的共有二级结构显示出其他盒式H/ACA snoRNA中不存在的几个特征。现有的紫外线诱导的RNA-蛋白质交联结果表明,与其他H/ACA snoRNP相比,E1 snoRNP在脊椎动物细胞中是不对称的。细胞中的脊椎动物E1 snoRNP出人意料地复杂:(i)E1 RNA直接且特异性地与几种似乎不是H/ACA RNP四种核心蛋白中的任何一种的蛋白质接触;(ii)E1 snoRNP形成、E1 RNA稳定性和E1 RNA-蛋白质直接相互作用需要多个E1 RNA位点。

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