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酵母基因YNL292w编码一种假尿苷合酶(Pus4),该酶催化线粒体和细胞质转运RNA中假尿苷55的形成。

The yeast gene YNL292w encodes a pseudouridine synthase (Pus4) catalyzing the formation of psi55 in both mitochondrial and cytoplasmic tRNAs.

作者信息

Becker H F, Motorin Y, Planta R J, Grosjean H

机构信息

Laboratoire d'Enzymologie et Biochimie Structurales du CNRS, Avenue de la Terrasse, Batiment 34, F-91198 Gif-sur-Yvette, France.

出版信息

Nucleic Acids Res. 1997 Nov 15;25(22):4493-9. doi: 10.1093/nar/25.22.4493.

Abstract

The protein products of two yeast Saccharomyces cerevisiae genes (YNL292w and CBF5) display a remarkable sequence homology with Escherichia coli tRNA:pseudouridine-55 synthase (encoded by gene truB). The gene YNL292w coding for one of these proteins was cloned in an E.coli expression vector downstream of a His6-tag. The resulting recombinant protein (Pus4) was expressed at high level and purified to homogeneity by metal affinity chromatography on Ni2+-NTA-agarose, followed by ion-exchange chromatography on MonoQ. The purified Pus4p catalyzes the formation of pseudouridine-55 in T7 in vitro transcripts of several yeast tRNA genes. In contrast to the known yeast pseudouridine synthase (Pus1) of broad specificity, no other uridines in tRNA molecules are modified by the cloned recombinant tRNA:Psi55 synthase. The disruption of the corresponding gene YNL292w in yeast, which has no significant effect on the growth of yeast cells, leads to the complete disappearance of the Psi55 formation activity in a cell-free extract. These results allow the formal identification of the protein encoded by the yeast ORF YNL292w as the only enzyme responsible for the formation of Psi55 which is almost universally conserved in tRNAs. The substrate specificity of the purified YNL292w-encoded recombinant protein was shown to be similar to that of the native protein present in yeast cell extract. Chemical mapping of pseudouridine residues in both cytoplasmic and mitochondrial tRNAs from the yeast strain carrying the disrupted gene reveals that the same gene product is responsible for Psi55 formation in tRNAs of both cellular compartments.

摘要

酿酒酵母的两个基因(YNL292w和CBF5)的蛋白质产物与大肠杆菌的tRNA:假尿苷-55合酶(由基因truB编码)显示出显著的序列同源性。编码其中一种蛋白质的基因YNL292w被克隆到His6标签下游的大肠杆菌表达载体中。所得重组蛋白(Pus4)高水平表达,并通过在Ni2 + -NTA-琼脂糖上进行金属亲和层析,随后在MonoQ上进行离子交换层析纯化至同质。纯化的Pus4p催化几种酵母tRNA基因的T7体外转录本中假尿苷-55的形成。与已知的具有广泛特异性的酵母假尿苷合酶(Pus1)不同,tRNA分子中的其他尿苷不会被克隆的重组tRNA:Psi55合酶修饰。酵母中相应基因YNL292w的破坏对酵母细胞的生长没有显著影响,但导致无细胞提取物中Psi55形成活性完全消失。这些结果正式确定了酵母开放阅读框YNL292w编码的蛋白质是负责Psi55形成的唯一酶,Psi55在tRNA中几乎普遍保守。纯化的YNL292w编码重组蛋白的底物特异性与酵母细胞提取物中存在的天然蛋白相似。对携带破坏基因的酵母菌株的细胞质和线粒体tRNA中的假尿苷残基进行化学定位,结果表明相同的基因产物负责两个细胞区室的tRNA中Psi55的形成。

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