Chang Yuan-Chih, Lo Yu-Hui, Lee Ming-Hui, Leng Chih-Hsiang, Hu Su-Ming, Chang Chia-Seng, Wang Ting-Fang
Institute of Physics, Academia Sinica, Taipei 11529, Taiwan.
Biochemistry. 2005 Apr 26;44(16):6052-8. doi: 10.1021/bi048897q.
Saccharomyces cerevisiae Dmc1, a meiosis-specific homologue of RecA, catalyzes homologous pairing and strand exchange during meiotic DNA recombination. The purified budding yeast Dmc1 (ScDmc1) protein exhibits much weaker recombinase activity in vitro as compared to that of the Escherichia coli RecA protein. Using atomic force microscopy (AFM) with carbon nanotube tips, we found ScDmc1 forms rings with an external diameter of 18 nm and a central cavity of 4 nm. In the presence of single-stranded DNA (ssDNA), the majority of the ScDmc1 protein (90%) bound DNA as protein rings; only a small faction (10%) was able to form filamentous structure. In contrast, nearly all RecA proteins form fine helical nucleoprotein filaments with ssDNA under identical conditions. RecA-mediated recombinase activity is initiated through the nucleation of RecA onto ssDNA to form helical nucleoprotein filaments. Our results support the notion that ScDmc1 becomes catalytically active only when it forms a helical nucleoprotein filament with ssDNA.
酿酒酵母Dmc1是RecA的减数分裂特异性同源物,在减数分裂DNA重组过程中催化同源配对和链交换。与大肠杆菌RecA蛋白相比,纯化的芽殖酵母Dmc1(ScDmc1)蛋白在体外表现出弱得多的重组酶活性。使用带有碳纳米管尖端的原子力显微镜(AFM),我们发现ScDmc1形成外径为18nm、中心腔为4nm的环。在单链DNA(ssDNA)存在的情况下,大多数ScDmc1蛋白(90%)以蛋白环的形式结合DNA;只有一小部分(10%)能够形成丝状结构。相比之下,在相同条件下,几乎所有RecA蛋白都能与ssDNA形成精细的螺旋核蛋白丝。RecA介导的重组酶活性是通过RecA在ssDNA上成核形成螺旋核蛋白丝而启动的。我们的结果支持这样一种观点,即ScDmc1只有在与ssDNA形成螺旋核蛋白丝时才具有催化活性。