Clare Hall Laboratories, Cancer Research UK, London Research Institute, Herts EN6 3LD, United Kingdom;
London Research Institute, London WC2A 3PX, United Kingdom.
Genes Dev. 2014 May 15;28(10):1124-36. doi: 10.1101/gad.238303.114.
The resolution of recombination intermediates containing Holliday junctions (HJs) is critical for genome maintenance and proper chromosome segregation. Three pathways for HJ processing exist in human cells and involve the following enzymes/complexes: BLM-TopoIIIα-RMI1-RMI2 (BTR complex), SLX1-SLX4-MUS81-EME1 (SLX-MUS complex), and GEN1. Cycling cells preferentially use the BTR complex for the removal of double HJs in S phase, with SLX-MUS and GEN1 acting at temporally distinct phases of the cell cycle. Cells lacking SLX-MUS and GEN1 exhibit chromosome missegregation, micronucleus formation, and elevated levels of 53BP1-positive G1 nuclear bodies, suggesting that defects in chromosome segregation lead to the transmission of extensive DNA damage to daughter cells. In addition, however, we found that the effects of SLX4, MUS81, and GEN1 depletion extend beyond mitosis, since genome instability is observed throughout all phases of the cell cycle. This is exemplified in the form of impaired replication fork movement and S-phase progression, endogenous checkpoint activation, chromosome segmentation, and multinucleation. In contrast to SLX4, SLX1, the nuclease subunit of the SLX1-SLX4 structure-selective nuclease, plays no role in the replication-related phenotypes associated with SLX4/MUS81 and GEN1 depletion. These observations demonstrate that the SLX1-SLX4 nuclease and the SLX4 scaffold play divergent roles in the maintenance of genome integrity in human cells.
解决含有 Holliday 连接点 (HJs) 的重组中间体对于基因组维护和正确的染色体分离至关重要。人类细胞中存在三种 HJ 加工途径,涉及以下酶/复合物:BLM-TopoIIIα-RMI1-RMI2(BTR 复合物)、SLX1-SLX4-MUS81-EME1(SLX-MUS 复合物)和 GEN1。增殖细胞优先利用 BTR 复合物在 S 期去除双链 HJ,而 SLX-MUS 和 GEN1 在细胞周期的不同时相发挥作用。缺乏 SLX-MUS 和 GEN1 的细胞表现出染色体错配、微核形成和高水平的 53BP1 阳性 G1 核体,表明染色体分离缺陷导致大量 DNA 损伤传递给子细胞。然而,此外,我们发现 SLX4、MUS81 和 GEN1 耗尽的影响超出了有丝分裂期,因为整个细胞周期都观察到基因组不稳定。这表现在复制叉运动和 S 期进展、内源性检查点激活、染色体分割和多核化受损的形式。与 SLX4 不同,SLX1 是 SLX1-SLX4 结构选择性核酸酶的核酸酶亚基,在与 SLX4/MUS81 和 GEN1 耗尽相关的复制相关表型中不起作用。这些观察结果表明,SLX1-SLX4 核酸酶和 SLX4 支架在人类细胞中维持基因组完整性方面发挥着不同的作用。