首页> 外文OA文献 >Covalent catalysis in nucleotidyl transfer reactions: essential motifs in Saccharomyces cerevisiae RNA capping enzyme are conserved in Schizosaccharomyces pombe and viral capping enzymes and among polynucleotide ligases.
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Covalent catalysis in nucleotidyl transfer reactions: essential motifs in Saccharomyces cerevisiae RNA capping enzyme are conserved in Schizosaccharomyces pombe and viral capping enzymes and among polynucleotide ligases.

机译:核苷酸转移反应中的共价催化:酿酒酵母RNA封端酶中的基本基序在粟酒裂殖酵母和病毒封端酶以及多核苷酸连接酶中是保守的。

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摘要

Formation of the 5' cap structure of eukaryotic mRNAs occurs via transfer of GMP from GTP to the 5' terminus of the primary transcript. RNA guanylyltransferase, the enzyme that catalyzes this reaction, has been isolated from many viral and cellular sources. Though differing in molecular weight and subunit structure, the various guanylyltransferases employ a common catalytic mechanism involving a covalent enzyme-(Lys-GMP) intermediate. Saccharomyces cerevisiae CEG1 is the sole example of a cellular capping enzyme gene. In this report, we describe the identification and characterization of the PCE1 gene encoding the capping enzyme from Schizosaccharomyces pombe. PCE1 was isolated from a cDNA library by functional complementation in Sa. cerevisiae. Induced expression of PCE1 in bacteria and in yeast confirmed that the 47-kDa Sc. pombe protein was enzymatically active. The amino acid sequence of PCE1 is 38% identical (152 of 402 residues) to the 52-kDa capping enzyme from Sa. cerevisiae. Comparison of the two cellular capping enzymes with guanylyltransferases encoded by DNA viruses revealed local sequence similarity at the enzyme's active site and at four additional collinear motifs. Mutational analysis of yeast CEG1 demonstrated that four of the five conserved motifs are essential for capping enzyme function in vivo. Remarkably, the same motifs are conserved in the polynucleotide ligase family of enzymes that employ an enzyme-(Lys-AMP) intermediate. These findings illuminate a shared structural basis for covalent catalysis in nucleotidyl transfer and suggest a common evolutionary origin for capping enzymes and ligases.
机译:真核mRNA的5'帽结构的形成是通过将GMP从GTP转移到初级转录本的5'末端发生的。可以从许多病毒和细胞源中分离出催化该反应的酶RNA胍基转移酶。尽管分子量和亚基结构不同,但是各种鸟苷基转移酶采用共同的催化机理,涉及共价酶-(Lys-GMP)中间体。酿酒酵母CEG1是细胞加帽酶基因的唯一例子。在此报告中,我们描述了编码和鉴定粟酒裂殖酵母加帽酶的PCE1基因的鉴定和表征。通过在Sa中进行功能互补,从cDNA文库中分离出PCE1。啤酒酵母。 PCE1在细菌和酵母中的诱导表达证实了47 kDa Sc。 pombe蛋白具有酶促活性。 PCE1的氨基酸序列与Sa中的52 kDa封端酶有38%的同一性(402个残基中的152个)。啤酒酵母。将两种细胞加帽酶与DNA病毒编码的鸟苷基转移酶进行比较,发现该酶的活性位点和四个其他共线基序具有局部序列相似性。酵母CEG1的突变分析表明,五个保守基序中的四个对于在体内限制酶功能至关重要。显着地,在使用酶-(Lys-AMP)中间体的酶的多核苷酸连接酶家族中,相同的基序是保守的。这些发现阐明了核苷酸转移中共价催化的共同结构基础,并暗示了封端酶和连接酶的共同进化起源。

著录项

  • 作者

    Shuman, S; Liu, Y; Schwer, B;

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  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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