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盒 C/D sRNP 二聚体结构在域古菌中是保守的。

The box C/D sRNP dimeric architecture is conserved across domain Archaea.

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

RNA. 2012 Aug;18(8):1527-40. doi: 10.1261/rna.033134.112. Epub 2012 Jun 29.

Abstract

Box C/D small (nucleolar) ribonucleoproteins [s(no)RNPs] catalyze RNA-guided 2'-O-ribose methylation in two of the three domains of life. Recent structural studies have led to a controversy over whether box C/D sRNPs functionally assemble as monomeric or dimeric macromolecules. The archaeal box C/D sRNP from Methanococcus jannaschii (Mj) has been shown by glycerol gradient sedimentation, gel filtration chromatography, native gel analysis, and single-particle electron microscopy (EM) to adopt a di-sRNP architecture, containing four copies of each box C/D core protein and two copies of the Mj sR8 sRNA. Subsequently, investigators used a two-stranded artificial guide sRNA, CD45, to assemble a box C/D sRNP from Sulfolobus solfataricus with a short RNA methylation substrate, yielding a crystal structure of a mono-sRNP. To more closely examine box C/D sRNP architecture, we investigate the role of the omnipresent sRNA loop as a structural determinant of sRNP assembly. We show through sRNA mutagenesis, native gel electrophoresis, and single-particle EM that a di-sRNP is the near exclusive architecture obtained when reconstituting box C/D sRNPs with natural or artificial sRNAs containing an internal loop. Our results span three distantly related archaeal species--Sulfolobus solfataricus, Pyrococcus abyssi, and Archaeoglobus fulgidus--indicating that the di-sRNP architecture is broadly conserved across the entire archaeal domain.

摘要

盒 C/D 小核仁核糖核蛋白(snoRNP)在生命的三个域中的两个中催化 RNA 引导的 2'-O-核糖甲基化。最近的结构研究导致了关于盒 C/D snoRNP 是否作为单体或二聚大分子功能性组装的争议。来自 Methanococcus jannaschii(Mj)的古菌盒 C/D snoRNP 通过甘油梯度沉降、凝胶过滤色谱、天然凝胶分析和单颗粒电子显微镜(EM)显示采用二 snoRNP 结构,包含每个盒 C/D 核心蛋白的四个拷贝和两个 Mj sR8 snoRNA 的拷贝。随后,研究人员使用双链人工向导 snoRNA CD45,用短 RNA 甲基化底物组装来自 Sulfolobus solfataricus 的盒 C/D snoRNP,产生了单 snoRNP 的晶体结构。为了更仔细地研究盒 C/D snoRNP 结构,我们研究了普遍存在的 snoRNA 环作为 snoRNP 组装的结构决定因素的作用。我们通过 snoRNA 诱变、天然凝胶电泳和单颗粒 EM 表明,当用含有内部环的天然或人工 snoRNA 重新组装盒 C/D snoRNP 时,二 snoRNP 是几乎唯一获得的结构。我们的结果跨越了三个远缘古菌物种——Sulfolobus solfataricus、Pyrococcus abyssi 和 Archaeoglobus fulgidus——表明二 snoRNP 结构在整个古菌域中广泛保守。

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