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酿酒酵母tRNA:Ψ31合成酶(Pus6p)的鉴定与特性分析

Identification and characterization of the tRNA:Psi 31-synthase (Pus6p) of Saccharomyces cerevisiae.

作者信息

Ansmant I, Motorin Y, Massenet S, Grosjean H, Branlant C

机构信息

Laboratoire de Maturation des ARN et Enzymologie Moléculaire, UMR 7567 CNRS-UHP Nancy I, Faculté des Sciences, BP 239, 54506 Vandoeuvre-les-Nancy Cedex, France.

出版信息

J Biol Chem. 2001 Sep 14;276(37):34934-40. doi: 10.1074/jbc.M103131200. Epub 2001 Jun 13.

Abstract

To characterize the substrate specificity of the putative RNA:pseudouridine (Psi)-synthase encoded by the Saccharomyces cerevisiae open reading frame (ORF) YGR169c, the corresponding gene was deleted in yeast, and the consequences of the deletion on tRNA and small nuclear RNA modification were tested. The resulting DeltaYGR169c strain showed no detectable growth phenotype, and the only difference in Psi formation in stable cellular RNAs was the absence of Psi at position 31 in cytoplasmic and mitochondrial tRNAs. Complementation of the DeltaYGR169c strain by a plasmid bearing the wild-type YGR169c ORF restored Psi(31) formation in tRNA, whereas a point mutation of the enzyme active site (Asp(168)-->Ala) abolished tRNA:Psi(31)-synthase activity. Moreover, recombinant His(6)-tagged Ygr169 protein produced in Escherichia coli was capable of forming Psi(31) in vitro using tRNAs extracted from the DeltaYGR169c yeast cells as substrates. These results demonstrate that the protein encoded by the S. cerevisiae ORF YGR169c is the Psi-synthase responsible for modification of cytoplasmic and mitochondrial tRNAs at position 31. Because this is the sixth RNA:Psi-synthase characterized thus far in yeast, we propose to rename the corresponding gene PUS6 and the expressed protein Pus6p. Finally, the cellular localization of the green fluorescent protein-tagged Pus6p was studied by functional tests and direct fluorescence microscopy.

摘要

为了表征由酿酒酵母开放阅读框(ORF)YGR169c编码的假定RNA:假尿苷(Ψ)合酶的底物特异性,在酵母中删除了相应基因,并测试了该缺失对tRNA和小核RNA修饰的影响。所得的ΔYGR169c菌株未显示出可检测到的生长表型,并且稳定细胞RNA中Ψ形成的唯一差异是细胞质和线粒体tRNA中第31位不存在Ψ。用携带野生型YGR169c ORF的质粒对ΔYGR169c菌株进行互补可恢复tRNA中Ψ(31)的形成,而酶活性位点的点突变(Asp(168)→Ala)则消除了tRNA:Ψ(31)合酶活性。此外,在大肠杆菌中产生的重组His(6)标记的Ygr169蛋白能够使用从ΔYGR169c酵母细胞中提取的tRNA作为底物在体外形成Ψ(31)。这些结果表明,酿酒酵母ORF YGR169c编码的蛋白质是负责细胞质和线粒体tRNA第31位修饰的Ψ合酶。由于这是迄今为止在酵母中表征的第六种RNA:Ψ合酶,我们建议将相应基因重命名为PUS6,将表达的蛋白质重命名为Pus6p。最后,通过功能测试和直接荧光显微镜研究了绿色荧光蛋白标记的Pus6p的细胞定位。

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