必需的H/ACA核糖核蛋白组装蛋白SHQ1的CS结构域的结构与功能研究

Structure and functional studies of the CS domain of the essential H/ACA ribonucleoparticle assembly protein SHQ1.

作者信息

Singh Mahavir, Gonzales Fernando A, Cascio Duilio, Heckmann Nathanael, Chanfreau Guillaume, Feigon Juli

机构信息

Department of Chemistry and Biochemistry, UCLA, Los Angeles, California 90095, USA.

出版信息

J Biol Chem. 2009 Jan 16;284(3):1906-16. doi: 10.1074/jbc.M807337200. Epub 2008 Nov 19.

Abstract

H/ACA ribonucleoprotein particles are essential for ribosomal RNA and telomerase RNA processing and metabolism. Shq1p has been identified as an essential eukaryotic H/ACA small nucleolar (sno) ribonucleoparticle (snoRNP) biogenesis and assembly factor. Shq1p is postulated to be involved in the early biogenesis steps of H/ACA snoRNP complexes, and Shq1p depletion leads to a specific decrease in H/ACA small nucleolar RNA levels and to defects in ribosomal RNA processing. Shq1p contains two predicted domains as follows: an N-terminal CS (named after CHORD-containing proteins and SGT1) or HSP20-like domain, and a C-terminal region of high sequence homology called the Shq1 domain. Here we report the crystal structure and functional studies of the Saccharomyces cerevisiae Shq1p CS domain. The structure consists of a compact anti-parallel beta-sandwich fold that is composed of two beta-sheets containing four and three beta-strands, respectively, and a short alpha-helix. Deletion studies showed that the CS domain is required for the essential functions of Shq1p. Point mutations in residues Phe-6, Gln-10, and Lys-80 destabilize Shq1p in vivo and induce a temperature-sensitive phenotype with depletion of H/ACA small nucleolar RNAs and defects in rRNA processing. Although CS domains are frequently found in co-chaperones of the Hsp90 molecular chaperone, no interaction was detected between the Shq1p CS domain and yeast Hsp90 in vitro. These results show that the CS domain is essential for Shq1p function in H/ACA snoRNP biogenesis in vivo, possibly in an Hsp90-independent manner.

摘要

H/ACA核糖核蛋白颗粒对于核糖体RNA以及端粒酶RNA的加工与代谢至关重要。Shq1p已被鉴定为一种必需的真核生物H/ACA小核仁(sno)核糖核蛋白颗粒(snoRNP)生物发生及组装因子。据推测,Shq1p参与H/ACA snoRNP复合物的早期生物发生步骤,并且Shq1p的缺失会导致H/ACA小核仁RNA水平的特异性降低以及核糖体RNA加工缺陷。Shq1p包含两个预测结构域,如下所示:一个N端CS结构域(以含CHORD的蛋白质和SGT1命名)或HSP20样结构域,以及一个具有高度序列同源性的C端区域,称为Shq1结构域。在此,我们报道了酿酒酵母Shq1p CS结构域的晶体结构及功能研究。该结构由一个紧密的反平行β-折叠三明治结构组成,它由两个β-折叠片层构成,分别包含四条和三条β-链,以及一个短α-螺旋。缺失研究表明,CS结构域对于Shq1p的基本功能是必需的。苯丙氨酸-6、谷氨酰胺-10和赖氨酸-80位点的点突变在体内使Shq1p不稳定,并诱导出温度敏感型表型,伴有H/ACA小核仁RNA的缺失以及rRNA加工缺陷。尽管CS结构域在Hsp90分子伴侣的共伴侣中经常出现,但在体外未检测到Shq1p CS结构域与酵母Hsp90之间存在相互作用。这些结果表明,CS结构域对于Shq1p在体内H/ACA snoRNP生物发生中的功能至关重要,可能是以一种不依赖Hsp90的方式。

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