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Cap-snatching mechanism in yeast L-A double-stranded RNA virus

机译:酵母L-A双链RNA病毒的抢帽机制

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摘要

The 5' cap structure (m~7GpppX-) is an essential feature of eukaryo-tic mRNA required for mRNA stability and efficient translation. Influenza virus furnishes its mRNA with this structure by a cap-snatching mechanism, in which the viral polymerase cleaves host mRNA endonucleolytically 10-13 nucleotides from the 5' end and utilizes the capped fragment as a primer to synthesize viral transcripts. Here we report a unique cap-snatching mechanism by which the yeast double-stranded RNA totivirus L-A furnishes its transcript with a cap structure derived from mRNA. Unlike influenza virus, L-A transfers only m~7Gp from the cap donor to the 5' end of the viral transcript, thus preserving the 5' a- and β-phosphates of the transcript in the triphosphate linkage of the final product. This in vitro capping reaction requires His154 of the coat protein Gag, a residue essential for decapping of host mRNA and known to form m~7Gp-His adduct. Furthermore, the synthesis of capped viral transcripts in vivo and their expression were greatly compromised by the Arg154 mutation, indicating the involvement of Gag in the cap-snatching reaction. The overall reaction and the structure around the catalytic site in Gag resemble those of guanylyl-transferase, a key enzyme of cellular mRNA capping, suggesting convergent evolution. Given that Pol of L-A is confined inside the virion and unable to access host mRNA in the cytoplasm, the structural protein Gag rather than Pol catalyzing this unique cap-snatching reaction exemplifies the versatility as well as the adaptability of eukaryotic RNA viruses.
机译:5'帽结构(m〜7GpppX-)是真核mRNA的基本特征,是mRNA稳定和有效翻译所必需的。流感病毒通过抢帽机制为其mRNA提供了这种结构,其中病毒聚合酶从5'端以核酸内切的方式从10-13个核苷酸内切割宿主mRNA,并利用帽片段作为引物来合成病毒转录本。在这里,我们报道了一种独特的酶帽捕捉机制,酵母双链RNA胎盘病毒L-A通过其机制提供了一个源自mRNA的酶帽结构。与流感病毒不同,L-A仅将m〜7Gp从帽供体转移到病毒转录物的5'末端,从而在最终产物的三磷酸键中保留了转录物的5'α-和β-磷酸。这种体外加帽反应需要外壳蛋白Gag的His154,这是宿主mRNA脱盖必不可少的残基,已知会形成m〜7Gp-His加合物。此外,Arg154突变大大限制了带帽病毒转录物的体内合成及其表达,这表明Gag参与了帽捕获反应。 Gag中整个反应和催化位点周围的结构类似于鸟苷基转移酶,后者是细胞mRNA封盖的关键酶,表明会聚。鉴于L-A的Pol限制在病毒体内部,并且无法访问细胞质中的宿主mRNA,因此结构蛋白Gag而非Pol催化这种独特的抢帽反应表明了真核RNA病毒的多功能性和适应性。

著录项

  • 来源
  • 作者

    Tsutomu Fujimura; Rosa Esteban;

  • 作者单位

    Instituto de Biologia Funcional y Genomica, Consejo Superior de Investigaciones Cientificas/Universidad de Salamanca, Edificio Departamental, Avenida del Campo Charro s, Salamanca 37007, Spain;

    Instituto de Biologia Funcional y Genomica, Consejo Superior de Investigaciones Cientificas/Universidad de Salamanca, Edificio Departamental, Avenida del Campo Charro s, Salamanca 37007, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    transcription; saccharomyces cerevisiae; killer toxin;

    机译:转录酿酒酵母;杀手毒素;
  • 入库时间 2022-08-18 00:41:00

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