首页> 外文期刊>Nucleic Acids Research >Alkylation damage causes MMR-dependent chromosomal instability in vertebrate embryos.
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Alkylation damage causes MMR-dependent chromosomal instability in vertebrate embryos.

机译:烷基化损伤导致脊椎动物胚胎中MMR依赖的染色体不稳定。

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摘要

S(N)1-type alkylating agents, like N-methyl-N-nitrosourea (MNU) and N-ethyl-N-nitrosourea (ENU), are potent mutagens. Exposure to alkylating agents gives rise to O(6)-alkylguanine, a modified base that is recognized by DNA mismatch repair (MMR) proteins but is not repairable, resulting in replication fork stalling and cell death. We used a somatic mutation detection assay to study the in vivo effects of alkylation damage on lethality and mutation frequency in developing zebrafish embryos. Consistent with the damage-sensing role of the MMR system, mutant embryos lacking the MMR enzyme MSH6 displayed lower lethality than wild-type embryos after exposure to ENU and MNU. In line with this, alkylation-induced somatic mutation frequencies were found to be higher in wild-type embryos than in the msh6 loss-of-function mutants. These mutations were found to be chromosomal aberrations that may be caused by chromosomal breaks that arise from stalled replication forks. As these chromosomal breaks arise at replication, they are not expected to be repaired by non-homologous end joining. Indeed, Ku70 loss-of-function mutants were found to be equally sensitive to ENU as wild-type embryos. Taken together, our results suggest that in vivo alkylation damage results in chromosomal instability and cell death due to aberrantly processed MMR-induced stalled replication forks.
机译:S(N)1型烷基化剂,如N-甲基-N-亚硝基脲(MNU)和N-乙基-N-亚硝基脲(ENU),是有效的诱变剂。暴露于烷基化剂会产生O(6)-烷基鸟嘌呤,这是一种修饰的碱基,可被DNA错配修复(MMR)蛋白质识别,但不可修复,从而导致复制叉停滞和细胞死亡。我们使用了一种体细胞突变检测方法来研究烷基化损伤对发育中的斑马鱼胚胎致死率和突变频率的体内影响。与MMR系统的损伤感知作用一致,缺乏MMR酶MSH6的突变胚胎在暴露于ENU和MNU之后显示出比野生型胚胎更低的致死率。与此相符,发现在野生型胚胎中烷基化诱导的体细胞突变频率要比在msh6功能丧失的突变体中更高。发现这些突变是染色体畸变,可能是由停滞的复制叉引起的染色体断裂引起的。由于这些染色体断裂是在复制时出现的,因此预期它们不会被非同源末端连接所修复。实际上,发现Ku70功能丧失的突变体对ENU的敏感性与野生型胚胎相同。两者合计,我们的结果表明,由于异常处理的MMR诱导的停滞的复制叉,体内烷基化损伤会导致染色体不稳定和细胞死亡。

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