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首页> 外文期刊>Genes & Genetic Systems >Green fluorescent protein fused to the C terminus of RAD51 specifically interferes with secondary DNA binding by the RAD51-ssDNA complex
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Green fluorescent protein fused to the C terminus of RAD51 specifically interferes with secondary DNA binding by the RAD51-ssDNA complex

机译:融合到RAD51 C末端的绿色荧光蛋白特异性地干扰RAD51-ssDNA复合体的次级DNA结合

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References(62) Cited-By(1) Green fluorescent protein (GFP), fused to the N or C terminus of a protein of interest, is widely used to monitor the localization and mobility of proteins in cells. RAD51 is an essential protein that functions in mitotic DNA repair and meiotic chromosome segregation by promoting the homologous recombination reaction. A previous genetic study with Arabidopsis thaliana revealed that GFP fused to the C terminus of RAD51 (RAD51-GFP) inhibits mitotic DNA repair, but meiotic homologous recombination remained unaffected. To determine how the C-terminal GFP specifically inhibits mitotic DNA repair by RAD51, we purified rice RAD51A1-GFP and RAD51A2-GFP, and performed biochemical analyses. Interestingly, purified RAD51A1-GFP and RAD51A2-GFP are proficient in DNA binding and ATP hydrolysis. However, nucleoprotein complexes containing single-stranded DNA and RAD51A1-GFP or RAD51A2-GFP are significantly defective in binding to the second DNA molecule (secondary DNA binding), and consequently fail to catalyze homologous pairing. In contrast, RAD51A1-GFP and RAD51A2-GFP efficiently stimulated homologous pairing promoted by the meiosis-specific RAD51 isoform DMC1. These biochemical characteristics are well conserved in human RAD51-GFP. Therefore, GFP fused to the C terminus of RAD51 abolishes the homologous pairing activity of RAD51 by disrupting secondary DNA binding, but does not affect its DMC1-stimulating activity.
机译:References(62)Cited-By(1)绿色荧光蛋白(GFP),与目标蛋白的N或C末端融合,被广泛用于监测蛋白在细胞中的定位和迁移。 RAD51是通过促进同源重组反应,在有丝分裂DNA修复和减数分裂染色体分离中起作用的必需蛋白。先前对拟南芥的遗传研究表明,融合至RAD51 C末端的GFP(RAD51-GFP)抑制有丝分裂DNA修复,但减数分裂同源重组仍然不受影响。为了确定C端GFP如何特异性抑制RAD51的有丝分裂DNA修复,我们纯化了水稻RAD51A1-GFP和RAD51A2-GFP,并进行了生化分析。有趣的是,纯化的RAD51A1-GFP和RAD51A2-GFP精通DNA结合和ATP水解。但是,含有单链DNA和RAD51A1-GFP或RAD51A2-GFP的核蛋白复合物在与第二个DNA分子的结合上有明显缺陷(第二个DNA结合),因此不能催化同源配对。相反,RAD51A1-GFP和RAD51A2-GFP有效地刺激了由减数分裂特异性RAD51亚型DMC1促进的同源配对。这些生物化学特征在人RAD51-GFP中被很好地保守。因此,融合到RAD51 C末端的GFP通过破坏次级DNA结合而消除了RAD51的同源配对活性,但不影响其DMC1刺激活性。

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