首页> 外文期刊>Nucleic Acids Research >The mitochondrial single-stranded DNA binding protein from S. cerevisiae, Rim1, does not form stable homo-tetramers and binds DNA as a dimer of dimers
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The mitochondrial single-stranded DNA binding protein from S. cerevisiae, Rim1, does not form stable homo-tetramers and binds DNA as a dimer of dimers

机译:来自S.Cerevisiae,RIM1的线粒体单链DNA结合蛋白不能形成稳定的同源四聚体,并将DNA与二聚体的二聚物结合

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摘要

Rim1 is the mitochondrial single-stranded DNA binding protein in Saccharomyces cerevisiae and functions to coordinate replication and maintenance of mtDNA. Rim1 can form homo-tetramers in solution and this species has been assumed to be solely responsible for ssDNA binding. We solved structures of tetrameric Rim1 in two crystals forms which differ in the relative orientation of the dimers within the tetramer. In testing whether the different arrangement of the dimers was due to formation of unstable tetramers, we discovered that while Rim1 forms tetramers at high protein concentration, it dissociates into a smaller oligomeric species at low protein concentrations. A single point mutation at the dimer-dimer interface generates stable dimers and provides support for a dimer-tetramer oligomerization model. The presence of Rim1 dimers in solution becomes evident in DNA binding studies using short ssDNA substrates. However, binding of the first Rim1 dimer is followed by binding of a second dimer, whose affinity depends on the length of the ssDNA. We propose a model where binding of DNA to a dimer of Rim1 induces tetramerization, modulated by the ability of the second dimer to interact with ssDNA.
机译:RIM1是酿酒酵母中的线粒体单链DNA结合蛋白,以及用于协调MTDNA的复制和维持的功能。 RIM1可以在溶液中形成同种四聚体,并且假设该物种仅对SSDNA结合负责。我们以两个晶体形式溶解了四聚体RIM1的结构,其在四聚体内的二聚体的相对取向不同。在测试中二聚体的不同布置是由于形成不稳定的四聚体的形成,我们发现,虽然RIM1在高蛋白质浓度下形成四聚体,但它以低蛋白质浓度分离成较小的低聚物质。二聚体二聚体界面的单点突变产生稳定的二聚体,并为二聚体 - 四聚物寡聚化模型提供载体。使用短的SSDNA基材的DNA结合研究中,溶液中的RIM1二聚体的存在变得明显。然而,第一RIM1二聚体的结合随后是第二二聚体的结合,其亲和力取决于SSDNA的长度。我们提出了一种模型,其中DNA与RIM1二聚体的结合诱导四聚化,通过第二二聚体与SSDNA相互作用的能力调节。

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  • 来源
    《Nucleic Acids Research》 |2018年第14期|共13页
  • 作者单位

    Washington Univ Sch Med Dept Biochem &

    Mol Biophys St Louis MO 63110 USA;

    Washington Univ Sch Med Dept Biochem &

    Mol Biophys St Louis MO 63110 USA;

    Washington Univ Sch Med Dept Biochem &

    Mol Biophys St Louis MO 63110 USA;

    Marquette Univ Dept Biol Sci Milwaukee WI 53201 USA;

    Washington Univ Sch Med Dept Biochem &

    Mol Biophys St Louis MO 63110 USA;

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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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