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Rev7 中的错义突变破坏了 Polζ 的形成,损害了小鼠的发育和对遗传毒性试剂诱导的 DNA 损伤的修复。

A missense mutation in Rev7 disrupts formation of Polζ, impairing mouse development and repair of genotoxic agent-induced DNA lesions.

机构信息

From the Graduate School of Natural Science and Technology and.

出版信息

J Biol Chem. 2014 Feb 7;289(6):3811-24. doi: 10.1074/jbc.M113.514752. Epub 2013 Dec 19.

Abstract

Repro22 is a mutant mouse produced via N-ethyl-N-nitrosourea-induced mutagenesis that shows sterility with germ cell depletion caused by defective proliferation of primordial germ cells, decreased body weight, and partial lethality during embryonic development. Using a positional cloning strategy, we identified a missense mutation in Rev7/Mad2l2 (Rev7(C70R)) and confirmed that the mutation is the cause of the defects in repro22 mice through transgenic rescue with normal Rev7. Rev7/Mad2l2 encodes a subunit of DNA polymerase ζ (Polζ), 1 of 10 translesion DNA synthesis polymerases known in mammals. The mutant REV7 did not interact with REV3, the catalytic subunit of Polζ. Rev7(C70R/C70R) cells showed decreased proliferation, increased apoptosis, and arrest in S phase with extensive γH2AX foci in nuclei that indicated accumulation of DNA damage after treatment with the genotoxic agent mitomycin C. The Rev7(C70R) mutation does not affect the mitotic spindle assembly checkpoint. These results demonstrated that Rev7 is essential in resolving the replication stalls caused by DNA damage during S phase. We concluded that Rev7 is required for primordial germ cell proliferation and embryonic viability and development through the translesion DNA synthesis activity of Polζ preserving DNA integrity during cell proliferation, which is required in highly proliferating embryonic cells.

摘要

Repro22 是一种通过 N-乙基-N-亚硝脲诱导突变产生的突变小鼠,表现为生殖细胞耗竭导致的不育,原始生殖细胞增殖缺陷,体重减轻,胚胎发育过程中部分致死。使用定位克隆策略,我们在 Rev7/Mad2l2(Rev7(C70R))中发现了一个错义突变,并通过正常 Rev7 的转基因拯救证实该突变是 repro22 小鼠缺陷的原因。Rev7/Mad2l2 编码 DNA 聚合酶 ζ(Polζ)的一个亚基,是哺乳动物中已知的 10 种跨损伤 DNA 合成聚合酶之一。突变的 REV7 与 Polζ 的催化亚基 REV3 没有相互作用。Rev7(C70R/C70R)细胞增殖减少,凋亡增加,并在 S 期停滞,细胞核中出现大量 γH2AX 焦点,表明在用致突变剂丝裂霉素 C 处理后 DNA 损伤的积累。Rev7(C70R)突变不影响有丝分裂纺锤体组装检查点。这些结果表明,Rev7 在解决 S 期 DNA 损伤引起的复制停滞中是必不可少的。我们得出结论,Rev7 通过 Polζ 的跨损伤 DNA 合成活性对于原始生殖细胞的增殖和胚胎的存活和发育是必需的,通过在高度增殖的胚胎细胞中保持 DNA 完整性来保护 DNA 完整性。

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