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Reversible ADP-ribosylation of RNA

机译:RNA的可逆ADP-核糖基化

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摘要

ADP-ribosylation is a reversible chemical modification catalysed by ADP-ribosyltransferases such as PARPs that utilize nicotinamide adenine dinucleotide (NAD(+)) as a cofactor to transfer monomer or polymers of ADP-ribose nucleotide onto macromolecular targets such as proteins and DNA. ADP-ribosylation plays an important role in several biological processes such as DNA repair, transcription, chromatin remodelling, host-virus interactions, cellular stress response and many more. Using biochemical methods we identify RNA as a novel target of reversible mono-ADP-ribosylation. We demonstrate that the human PARPs - PARP10, PARP11 and PARP15 as well as a highly diverged PARP homologue TRPT1, ADP-ribosylate phosphorylated ends of RNA. We further reveal that ADP-ribosylation of RNA mediated by PARP10 and TRPT1 can be efficiently reversed by several cellular ADP-ribosylhydrolases (PARG, TARG1, MACROD1, MACROD2 and ARH3), as well as by MACROD-like hydrolases from VEEV and SARS viruses. Finally, we show that TRPT1 and MACROD homologues in bacteria possess activities equivalent to the human proteins. Our data suggest that RNA ADP-ribosylation may represent a widespread and physiologically relevant form of reversible ADP-ribosylation signalling.
机译:ADP-核糖基化是由催化的可逆化学修饰的ADP- ribosyltransferases诸如利用烟酰胺腺嘌呤二核苷酸(NAD(+))作为辅因子,以传递单体或ADP-核糖核苷酸的聚合物到大分子靶如蛋白质和DNA标PARPs。 ADP核糖基化起着多种生物学过程,如DNA修复,转录,染色质重塑,宿主病毒相互作用,细胞应激反应和许多重要的作用。使用生物化学方法,我们确定RNA作为可逆单ADP-核糖基化的新靶标。我们证明,人类标PARPs - PARP10,PARP11和PARP15以及高度分歧PARP同源TRPT1,ADP-核糖基化磷酸化RNA的末端。我们进一步揭示由PARP10和TRPT1介导的RNA的ADP核糖基化可以通过多种细胞ADP-ribosylhydrolases(PARG,TARG1,MACROD1,MACROD2和ARH3)而有效地逆转,以及由MACROD般从VEEV和SARS病毒的水解酶。最后,我们表明,在细菌TRPT1和MACROD同源具备相当于人类蛋白质的活动。我们的数据表明,RNA ADP核糖基化可能代表可逆的ADP核糖基化信号的广泛和生理学相关形式。

著录项

  • 来源
    《Nucleic Acids Research》 |2019年第11期|共12页
  • 作者单位

    Univ Oxford Sir William Dunn Sch Pathol South Parks Rd Oxford OX1 3RE England;

    Univ Oxford Sir William Dunn Sch Pathol South Parks Rd Oxford OX1 3RE England;

    Rudjer Boskovic Inst Div Mol Biol Zagreb Croatia;

    Oregon Hlth &

    Sci Univ Dept Physiol &

    Pharmacol Program Chem Biol Portland OR 97239 USA;

    Univ Oxford Sir William Dunn Sch Pathol South Parks Rd Oxford OX1 3RE England;

    Rudjer Boskovic Inst Div Mol Biol Zagreb Croatia;

    Oregon Hlth &

    Sci Univ Dept Physiol &

    Pharmacol Program Chem Biol Portland OR 97239 USA;

    Univ Oxford Sir William Dunn Sch Pathol South Parks Rd Oxford OX1 3RE England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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