Institute for Cancer Genetics, Columbia University Irving Medical Center, New York, NY 10032, USA.
Department of Pathology & Cell Biology, Columbia University Irving Medical Center, New York, NY 10032, USA.
Cells. 2023 Dec 4;12(23):2762. doi: 10.3390/cells12232762.
Homology-directed repair (HDR) of double-strand DNA breaks (DSBs) is dependent on enzymatic resection of DNA ends by the Mre11/Rad50/Nbs1 complex. DNA resection is triggered by the CtIP/Sae2 protein, which allosterically promotes Mre11-mediated endonuclease DNA cleavage at a position internal to the DSB. Although the mechanics of resection, including the initial endonucleolytic step, are largely conserved in eucaryotes, CtIP and its functional counterpart in (Sae2) share only a modest stretch of amino acid homology. Nonetheless, this stretch contains two highly conserved phosphorylation sites for cyclin-dependent kinases (T843 in mouse) and the damage-induced ATM/ATR kinases (T855 in mouse), both of which are required for DNA resection. To explore the function of ATM/ATR phosphorylation at Ctip-T855, we generated and analyzed mice expressing the Ctip-T855A mutant. Surprisingly, unlike Ctip-null mice and Ctip-T843A-expressing mice, both of which undergo embryonic lethality, homozygous mice develop normally. Nonetheless, they are hypersensitive to ionizing radiation, and mouse embryo fibroblasts from these mice display marked defects in DNA resection, chromosomal stability, and HDR-mediated repair of DSBs. Thus, although ATM/ATR phosphorylation of CtIP-T855 is not required for normal animal development, it enhances CtIP-mediated DNA resection in response to acute stress, such as genotoxin exposure.
同源重组修复(HDR)双链 DNA 断裂(DSBs)依赖于 Mre11/Rad50/Nbs1 复合物对 DNA 末端的酶促切除。DNA 切除由 CtIP/Sae2 蛋白触发,该蛋白别构促进 Mre11 介导的在 DSB 内部位置的内切核酸酶 DNA 切割。尽管包括初始内切核酸酶步骤在内的切除机制在真核生物中基本保守,但 CtIP 及其在 (Sae2)中的功能对应物仅共享氨基酸同源性的一小段。尽管如此,该片段包含两个高度保守的细胞周期蛋白依赖性激酶(小鼠中的 T843)和损伤诱导的 ATM/ATR 激酶(小鼠中的 T855)的磷酸化位点,这两者均是 DNA 切除所必需的。为了探索 ATM/ATR 在 Ctip-T855 上的磷酸化作用的功能,我们生成并分析了表达 Ctip-T855A 突变体的小鼠。令人惊讶的是,与 Ctip 缺失小鼠和表达 Ctip-T843A 的小鼠不同,这两种小鼠均发生胚胎致死,纯合 小鼠正常发育。尽管如此,它们对电离辐射敏感,并且来自这些小鼠的 胚胎成纤维细胞在 DNA 切除、染色体稳定性和 HDR 介导的 DSB 修复方面表现出明显缺陷。因此,尽管 CtIP-T855 的 ATM/ATR 磷酸化对于正常动物发育不是必需的,但它增强了 CtIP 介导的对急性应激(如遗传毒素暴露)的 DNA 切除。