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Conservative homologous recombination preferentially repairs DNA double-strand breaks in the S phase of the cell cycle in human cells

机译:保守同源重组优先修复人类细胞中细胞周期S期的DNA双链断裂

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摘要

DNA double-strand breaks (DSBs) are repaired by either homologous recombination (HR) or non-homologous end joining (NHEJ) in mammalian cells. Repair with NHEJ or HR using single-strand annealing (SSA) often results in deletions and is generally referred to as non-conservative recombination. Error-free, conservative HR involves strand invasion and requires a homologous DNA template, and therefore it is generally believed that this type of repair occurs preferentially in the late S, G2 and M phases of the cell cycle, when the sister chromatid is available. There are several observations supporting this hypothesis, although it has not been tested directly. Here, we synchronize human SW480SN.3 cells in the G1/G0 (with serum starvation), S (with thymidine block) and M (with nocodazole) phases of the cell cycle and investigate the efficiency of conservative HR repair of an I-SceI-induced DSB. The frequency of HR repair of DSBs was 39 times higher in S-phase cells than in M-phase cells and 24-fold higher than in G1/G0 cells. This low level of conservative HR occurs even though a homologous template is present within the recombination substrate. We propose that this can be explained by an absence of recombination proteins outside the S phase or alternatively that there maybe factors that suppress HR in G1/G0 and M. Furthermore, we found that HR repair of DSBs involves short tract gene conversion in all the phases of the cell cycle. This indicates that the same pathway for conservative HR is employed in the repair of DSBs regardless of phase of the cell cycle and that only the frequency is affected.
机译:通过哺乳动物细胞中的同源重组(HR)或非同源末端连接(NHEJ)修复DNA双链断裂(DSB)。使用单链退火(SSA)的NHEJ或HR修复通常会导致缺失,通常称为非保守重组。无差错,保守的HR涉及链入侵,并需要同源的DNA模板,因此,通常认为这种类型的修复优先发生在细胞周期的S,G2和M后期(可使用姐妹染色单体)。尽管没有直接检验该假设,但有一些观察结果支持该假设。在这里,我们同步人SW480SN.3细胞在细胞周期的G1 / G0(有血清饥饿),S(有胸腺嘧啶核苷)和M(有诺考唑)阶段的过程,并研究了I-SceI的保守HR修复的效率诱导的DSB。 DSB的HR修复频率在S期细胞中比在M期细胞中高39倍,比在G1 / G0细胞中高24倍。即使重组模板内存在同源模板,也会发生这种低水平的保守HR。我们建议,这可以用S期外不存在重组蛋白来解释,也可以用抑制G1 / G0和M中HR的因素来解释。此外,我们发现DSBs的HR修复涉及所有细胞周期的各个阶段。这表明,不管细胞周期的相位如何,在修复DSB时都采用了相同的保守HR途径,并且仅影响频率。

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