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Structural and kinetic insights into stimulation of RppH-dependent RNA degradation by the metabolic enzyme DapF

机译:通过代谢酶DAPF刺激逆依赖性RNA降解的结构和动力学见解

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摘要

Vitally important for controlling gene expression in eukaryotes and prokaryotes, the deprotection of mRNA 5' termini is governed by enzymes whose activity is modulated by interactions with ancillary factors. In Escherichia coli, 5'-end-dependent mRNA degradation begins with the generation of monophosphorylated 5' termini by the RNA pyrophosphohydrolase RppH, which can be stimulated by DapF, a diaminopimelate epimerase involved in amino acid and cell wall biosynthesis. We have determined crystal structures of RppH-DapF complexes and measured rates of RNA deprotection. These studies show that DapF potentiates RppH activity in two ways, depending on the nature of the substrate. Its stimulatory effect on the reactivity of diphosphorylated RNAs, the predominant natural substrates of RppH, requires a substrate long enough to reach DapF in the complex, while the enhanced reactivity of triphosphorylated RNAs appears to involve DapF-induced changes in RppH itself and likewise increases with substrate length. This study provides a basis for understanding the intricate relationship between cellular metabolism and mRNA decay and reveals striking parallels with the stimulation of decapping activity in eukaryotes.
机译:对控制真核生物和原核生物中的基因表达来说至关重要,mRNA 5'末端的脱保护受酶的控制,其活动通过与辅助因素的相互作用进行调节。在大肠杆菌中,5'-终端依赖性mRNA劣化开始于通过RNA焦磷酸酶rpPH的单磷酸化5'末端的产生,其可以通过DAPF,其中氨基酸和细胞壁生物合成的二氨基纤维素映像酶刺激。我们已经确定了RPPH-DAPF复合物的晶体结构和测量的RNA脱保护率。这些研究表明,DAPF通过两种方式增强了RPPH活性,这取决于基材的性质。其对二磷酸化RNA的反应性的刺激作用,RPPH的主要天然底物,需要足够长的基材以在复合物中达到DAPF,而普磷酸化的RNA的增强反应性似乎涉及DAPF诱导的RPPH本身变化,同样增加基板长度。本研究为了解细胞新陈代谢与mRNA衰减之间复杂关系的基础,并揭示了在真核生物中捕获沉积活动的刺激。

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  • 来源
    《Nucleic Acids Research》 |2018年第13期|共16页
  • 作者单位

    NYU Sch Med Dept Biochem &

    Mol Pharmacol 550 First Ave New York NY 10016 USA;

    NYU Sch Med Dept Biochem &

    Mol Pharmacol 550 First Ave New York NY 10016 USA;

    NYU Sch Med Skirball Inst Kimmel Ctr Biol &

    Med 540 First Ave New York NY 10016 USA;

    NYU Sch Med Skirball Inst Kimmel Ctr Biol &

    Med 540 First Ave New York NY 10016 USA;

    NYU Sch Med Skirball Inst Kimmel Ctr Biol &

    Med 540 First Ave New York NY 10016 USA;

    NYU Dept Chem 100 Washington Sq East New York NY 10003 USA;

    NYU Dept Chem 100 Washington Sq East New York NY 10003 USA;

    NYU Sch Med Skirball Inst Kimmel Ctr Biol &

    Med 540 First Ave New York NY 10016 USA;

    NYU Sch Med Dept Biochem &

    Mol Pharmacol 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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