Department of Chemistry, National Taiwan University, Taipei, Taiwan.
Sci Rep. 2017 Nov 2;7(1):14964. doi: 10.1038/s41598-017-15088-z.
RecA plays central roles in the homologous recombination to repair double-stranded DNA break damage in E. coli. A previously identified recA strain surviving high doses of UV radiation includes a dominant RecA E38K mutation. Using single-molecule experiments, we showed that the RecA E38K variant protein assembles nucleoprotein filaments more rapidly than the wild-type RecA. We also used a single-molecule fluorescence resonance energy transfer (smFRET) experiment to compare the nucleation cluster dynamics of wild-type RecA and RecA E38K mutants on various short ssDNA substrates. At shorter ssDNA, nucleation clusters of RecA E38K form dynamically, while only few were seen in wild-type RecA. RecA E38K also forms stable nuclei by specifically lowering the dissociation rate constant, k . These observations provide evidence that greater nuclei stability and higher ssDNA binding affinity contribute to the observed enhanced recombination activity of the RecA E38K mutant. Given that assembly of RecA nucleoprotein filaments is the first committed step in recombinational repair processes, enhancement at this step gives rise to a more efficient recombinase.
RecA 在大肠杆菌中同源重组修复双链 DNA 断裂损伤中起着核心作用。先前鉴定的一种能够在高剂量紫外线辐射下存活的 recA 菌株包含一个显性 RecA E38K 突变。通过单分子实验,我们表明 RecA E38K 变体蛋白比野生型 RecA 更快地组装核蛋白丝。我们还使用单分子荧光共振能量转移 (smFRET) 实验比较了野生型 RecA 和 RecA E38K 突变体在各种短 ssDNA 底物上的成核簇动力学。在较短的 ssDNA 上,RecA E38K 的成核簇动态形成,而在野生型 RecA 中则很少见。RecA E38K 还通过特异性降低解离速率常数 k 来形成稳定的核。这些观察结果提供了证据,表明更大的核稳定性和更高的 ssDNA 结合亲和力有助于观察到 RecA E38K 突变体增强的重组活性。鉴于 RecA 核蛋白丝的组装是重组修复过程的第一步,该步骤的增强导致更有效的重组酶。