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Principles of RNA and nucleotide discrimination by the RNA processing enzyme RppH

机译:RNA加工酶RPPH的RNA和核苷酸鉴别原理

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摘要

All enzymes face a challenge of discriminating cognate substrates from similar cellular compounds. Finding a correct substrate is especially difficult for the Escherichia coli Nudix hydrolase RppH, which triggers 5'-end-dependent RNA degradation by removing orthophosphate from the 5'-diphosphorylated transcripts. Here we show that RppH binds and slowly hydrolyzes NTPs, NDPs and (p)ppGpp, which each resemble the 5'-end of RNA. A series of X-ray crystal structures of RppH-nucleotide complexes, trapped in conformations either compatible or incompatible with hydrolysis, explain the low reaction rates of mononucleotides and suggest two distinct mechanisms for their hydrolysis. While RppH adopts the same catalytic arrangement with 5'-diphosphorylated nucleotides as with RNA, the enzyme hydrolyzes 5'-triphosphorylated nucleotides by extending the active site with an additional Mg2+ cation, which coordinates another reactive nucleophile. Although the average intracellular pH minimizes the hydrolysis of nucleotides by slowing their reaction with RppH, they nevertheless compete with RNA for binding and differentially inhibit the reactivity of RppH with triphosphorylated and diphosphorylated RNAs. Thus, E. coli RppH integrates various signals, such as competing non-cognate substrates and a stimulatory protein factor DapF, to achieve the differential degradation of transcripts involved in cellular processes important for the adaptation of bacteria to different growth conditions.
机译:所有的酶面临类似的细胞的化合物鉴别同源基板的一个挑战。找到正确的底物是特别困难的大肠杆菌Nudix结构水解酶RppH,这触发器5'-末端依赖性通过从5'-二磷酸化的转录物中除去正磷酸的RNA降解。在这里,我们表明,RppH结合并缓慢水解的NTP,NDPS和(p)ppGpp的,其各自类似于RNA的5'端。一系列RppH核苷酸复合物的X射线晶体结构,困在构象或者相容或不相容的水解,解释的单核苷酸的低的反应速率,并提出它们的水解两种不同的机制。虽然RppH采用与5'-二磷酸核苷酸与RNA相同的催化装置,所述酶通过扩展与另外的Mg 2+的阳离子,其中坐标另一个反应性的亲核活性位点水解5'-三磷酸化的核苷酸。尽管平均细胞内pH通过减慢它们与RppH反应最小化的核苷酸的水解,但是它们仍然具有RNA竞争结合和抑制差异的RppH与三磷酸和二磷酸的RNA的反应性。因此,大肠杆菌RppH集成的各种信号,如竞争型非同源基板和刺激蛋白因子dapF的,实现参与细菌的适应不同的生长条件重要的细胞过程转录物的差动降解。

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  • 来源
    《Nucleic Acids Research》 |2020年第7期|共13页
  • 作者单位

    NYU Dept Biochem &

    Mol Pharmacol Sch Med 550 First Ave New York NY 10016 USA;

    NYU Dept Biochem &

    Mol Pharmacol Sch Med 550 First Ave New York NY 10016 USA;

    NYU Dept Biochem &

    Mol Pharmacol Sch Med 550 First Ave New York NY 10016 USA;

    NYU Dept Biochem &

    Mol Pharmacol Sch Med 550 First Ave New York NY 10016 USA;

    NYU Dept Biochem &

    Mol Pharmacol Sch Med 550 First Ave New York NY 10016 USA;

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  • 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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