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首页> 外文期刊>Nature chemical biology >ykkC riboswitches employ an add-on helix to adjust specificity for polyanionic ligands.
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ykkC riboswitches employ an add-on helix to adjust specificity for polyanionic ligands.

机译:YKKC Riboswitches采用附加螺旋来调节多变性配体的特异性。

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摘要

The ykkC family of bacterial riboswitches combines several widespread classes that have similar secondary structures and consensus motifs but control different genes in response to different cellular metabolites. Here we report the crystal structures of two distinct ykkC riboswitches specifically bound to their cognate ligand ppGpp, a second messenger involved in stress response, or PRPP, a precursor in purine biosynthesis. Both RNAs adopt similar structures and contain a conserved core previously observed in the guanidine-specific ykkC riboswitch. However, ppGpp and PRPP riboswitches uniquely employ an additional helical element that joins the ends of the ligand-sensing domains and creates a tunnel for direct and Mg~(2+)-mediated binding of ligands. Mutational and footprinting experiments highlight the importance of conserved nucleotides forming the tunnel and long-distance contacts for ligand binding and genetic response. Our work provides new insights into the specificity of riboswitches and gives a unique opportunity for future studies of RNA evolution.
机译:YKKC细菌系列的细菌系列结合了几种具有相似的二次结构和共有基序的几种群体,但对不同的细胞代谢物进行了控制不同的基因。在这里,我们报道了两个不同的YKKC核糖接口的晶体结构,具体地与其同源配体PPGPP,第二信使参与应激反应,或PRPP,嘌呤生物合成中的前体。两个RNA采用类似的结构,并含有先前在胍汀特定的YKKC核糖区中观察到的保守核心。然而,PPGPP和PRPP核糖织物唯一地采用额外的螺旋元件,该附加螺旋元件加入配体感测结构域的末端,并为直接和Mg〜(2 +)介导的配体结合产生隧道。突变和脚印实验突出了形成隧道的保守核苷酸的重要性和用于配体结合和遗传反应的长距离接触。我们的工作为RiboSwitches的特殊性提供了新的见解,并为RNA演变的未来研究提供了独特的机会。

著录项

  • 来源
    《Nature chemical biology》 |2018年第9期|共8页
  • 作者单位

    Department of Biochemistry and Molecular Pharmacology New York University School of Medicine New York NY USA;

    Department of Biochemistry and Molecular Pharmacology New York University School of Medicine New York NY USA;

  • 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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