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Cross-subunit catalysis and a new phenomenon of recessive resurrection in Escherichia coli RNase E

机译:跨越亚基催化和大肠杆菌rnase e中隐性复活的新现象

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摘要

RNase E is a 472-kDa homo-tetrameric essential endoribonuclease involved in RNA processing and turnover in Escherichia coli. In its N-terminal half (NTH) is the catalytic active site, as also a substrate 5 '-sensor pocket that renders enzyme activity maximal on 5 '-monophosphorylated RNAs. The protein's non-catalytic C-terminal half (CTH) harbours RNA-binding motifs and serves as scaffold for a multiprotein degradosome complex, but is dispensable for viability. Here, we provide evidence that a full-length hetero-tetramer, composed of a mixture of wild-type and (recessive lethal) active-site mutant subunits, exhibits identical activity in vivo as the wild-type homo-tetramer itself ('recessive resurrection'). When all of the cognate polypeptides lacked the CTH, the active-site mutant subunits were dominant negative. A pair of C-terminally truncated polypeptides, which were individually inactive because of additional mutations in their active site and 5 '-sensor pocket respectively, exhibited catalytic function in combination, both in vivo and in vitro (i.e. intragenic or allelic complementation). Our results indicate that adjacent subunits within an oligomer are separately responsible for 5 '-sensing and cleavage, and that RNA binding facilitates oligomerization. We propose also that the CTH mediates a rate-determining initial step for enzyme function, which is likely the binding and channelling of substrate for NTH's endonucleolytic action.
机译:RNase e是472 kda同源四聚必要的内联核酸酶,参与大肠杆菌的RNA加工和周转。在其N-末端半(第N)是催化活性位点,也是衬底5' - 调校袋,其在5' - 单磷酸化的RNA上呈现酶活性最大。蛋白质的非催化C-末端半(CTH)HARBORS RNA结合基序并用作多素蛋白劣蛋白络合物的支架,但是用于可生存性的可分配。在这里,我们提供了由野生型和(隐性致死)活性位点亚基的混合物组成的全长异质 - 四聚体,其在体内作为野生型同工四聚体本身在体内表现出相同的活性('隐性复活')。当所有同源多肽缺乏CTH时,活性位点突变亚基占优势阴性。一对C末端截短的多肽,其由于其活性位点和5'-调传袋中的另外的突变分别是单独的而不相的,其在体内和体外组合地表现出催化功能(即introgenic或等位基因)。我们的结果表明,低聚物内的相邻亚基分别负责5' - 敏感和切割,并且RNA结合有助于低聚。我们还提出CTH介导酶功能的速率确定初始步骤,这可能是Nth内后核分子溶解作用的底物的结合和窜。

著录项

  • 来源
    《Nucleic Acids Research》 |2020年第2期|共15页
  • 作者单位

    Ctr DNA Fingerprinting &

    Diagnost Lab Bacterial Genet Hyderabad 500039 India;

    Ctr DNA Fingerprinting &

    Diagnost Lab Bacterial Genet Hyderabad 500039 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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