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Visualizing RAD51-mediated joint molecules: implications for recombination mechanism and the effect of sequence heterology.

机译:可视化RAD51介导的联合分子:重组机制和序列异质性的影响。

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The defining event in homologous recombination is the exchange of base-paired partners between a single-stranded (ss) DNA and a homologous duplex driven by recombinase proteins, such as human RAD51. To understand the mechanism of this essential genome maintenance event, we analyzed the structure of RAD51-DNA complexes representing strand exchange intermediates at nanometer resolution by scanning force microscopy. Joint molecules were formed between substrates with a defined ssDNA segment and homologous region on a double-stranded (ds) partner. We discovered and quantified several notable architectural features of RAD51 joint molecules. Each end of the RAD51-bound joints had a distinct structure. Using linear substrates, a 10-nt region of mispaired bases blocked extension of joint molecules in all examples observed, whereas 4nt of heterology only partially blocked joint molecule extension. Joint molecules, including 10nt of heterology, had paired DNA on either side of the heterologous substitution, indicating that pairing could initiate from the free 3'end of ssDNA or from a region adjacent to the ss-ds junction. RAD51 filaments covering joint ss-dsDNA regions were more stable to disassembly than filaments covering dsDNA. We discuss how distinct structural features of RAD51-bound DNA joints can play important roles as recognition sites for proteins that facilitate and control strand exchange.
机译:同源重组的决定性事件是单链(ss)DNA与由重组酶蛋白(例如人RAD51)驱动的同源双链体之间碱基配对伴侣的交换。为了了解这一基本基因组维持事件的机制,我们通过扫描力显微镜分析了代表纳米级链交换中间体的RAD51-DNA复合物的结构。在具有定义的ssDNA片段和双链(ds)伴侣上的同源区域的底物之间形成了联合分子。我们发现并量化了RAD51联合分子的几个著名的建筑特征。 RAD51绑定的关节的每个末端都有不同的结构。在所有实施例中,使用线性底物,碱基配对错误的10-nt区域会阻止关节分子的延伸,而异源性的4nt仅能部分阻止关节分子的延伸。包括10nt杂合性在内的关节分子在异源取代的任一侧都具有成对的DNA,这表明配对可以从ssDNA的自由3'末端或邻近ss-ds连接的区域开始。覆盖关节ss-dsDNA区域的RAD51细丝比覆盖dsDNA的细丝更稳定地拆卸。我们讨论了RAD51结合的DNA接头的独特结构特征如何作为促进和控制链交换的蛋白质的识别位点发挥重要作用。

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