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RecA requires two molecules of Mg2+ ions for its optimal strand exchange activity in vitro

机译:RECA需要两种MG2 +离子的分子,用于其体外最佳的链交换活性

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摘要

Mg2+ ion stimulates the DNA strand exchange reaction catalyzed by RecA, a key step in homologous recombination. To elucidate the molecular mechanisms underlying the role of Mg2+ and the strand exchange reaction itself, we investigated the interaction of RecA with Mg2+ and sought to determine which step of the reaction is affected. Thermal stability, intrinsic fluorescence, and native mass spectrometric analyses of RecA revealed that RecA binds at least two Mg2+ ions with K-D approximate to 2 mM and 5 mM. Deletion of the C-terminal acidic tail of RecA made its thermal stability and fluorescence characteristics insensitive to Mg2+ and similar to those of full-length RecA in the presence of saturating Mg2+. These observations, together with the results of a molecular dynamics simulation, support the idea that the acidic tail hampers the strand exchange reaction by interacting with other parts of RecA, and that binding of Mg2+ to the tail prevents these interactions and releases RecA from inhibition. We observed that binding of the first Mg2+ stimulated joint molecule formation, whereas binding of the second stimulated progression of the reaction. Thus, RecA is actively involved in the strand exchange step as well as bringing the two DNAs close to each other.
机译:Mg2 +离子刺激RECA催化的DNA链交换反应,是同源重组的关键步骤。为了阐明基于Mg2 +和链交换反应本身的作用的分子机制,我们研究了RECA与MG2 +的相互作用,并寻求确定反应的哪个步骤受到影响。 RECA的热稳定性,内在荧光和天然质谱分析显示RECA将至少两个Mg 2 +离子与K-D近似约2mm和5mm结合。缺失Rea的C-末端酸性尾部使其热稳定性和荧光特性对Mg2 +不敏感的不敏感,并且类似于饱和Mg2 +存在的全长Reca的含量。这些观察结果与分子动力学模拟的结果一起支持酸性尾气通过与RECA的其他部分相互作用的思想,并且Mg2 +与尾部的结合可防止这些相互作用并释放抑制素。我们观察到第一Mg2 +刺激的关节分子形成的结合,而第二刺激的反应的结合。因此,RECA积极参与股线交换步骤,以及使两个DNA彼此靠近。

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  • 来源
    《Nucleic Acids Research》 |2018年第5期|共12页
  • 作者单位

    Yeungnam Univ Dept Chem Gyeonsan City 38541 South Korea;

    Tokyo Inst Technol Sch Life Sci &

    Technol Meguro Ku 2-12-1 Ookayama Tokyo 1528550 Japan;

    RIKEN Quantitat Biol Ctr Tsurumi Ku 1-7-22 Suehiro Cho Yokohama Kanagawa 2300045 Japan;

    CNRS UPR9080 Inst Biol Physicochim Lab Biochim Theor 13 Rue Pierre &

    Marie Curie F-75005 Paris France;

    Natl Inst Nat Sci Okazaki Inst Integrat Biosci 5-1 Higashiyama Okazaki Aichi 4448787 Japan;

    Tokyo Inst Technol Sch Life Sci &

    Technol Meguro Ku 2-12-1 Ookayama Tokyo 1528550 Japan;

    Natl Inst Nat Sci Okazaki Inst Integrat Biosci 5-1 Higashiyama Okazaki Aichi 4448787 Japan;

    Kyoto Prefectural Univ Grad Sch Life &

    Environm Sci Sakyo Ku 1-5 Hangi Cho Kyoto 6068522 Japan;

    Tokyo Inst Technol Sch Life Sci &

    Technol Meguro Ku 2-12-1 Ookayama Tokyo 1528550 Japan;

    Yeungnam Univ Dept Chem Gyeonsan City 38541 South Korea;

    Tokyo Inst Technol Sch Life Sci &

    Technol Meguro Ku 2-12-1 Ookayama Tokyo 1528550 Japan;

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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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