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Initiation of the ATM-Chk2 DNA damage response through the base excision repair pathway

机译:通过碱基切除修复途径引发ATM-Chk2 DNA损伤反应

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摘要

The DNA damage response (DDR) is activated by various genotoxic stresses. Base lesions, which are structurally simple and predominantly fixed by base excision repair (BER), can trigger the ataxia telangiectasia mutated (ATM)-checkpoint kinase 2 (Chk2) pathway, a DDR component. How these lesions trigger DDR remains unclear. Here we show that, for alkylation damage, methylpurine-DNA glycosylase (MPG) and apurinic/apyrimidinic endonuclease 1, both of which function early in BER, are required for ATM-Chk2-dependent DDR. In addition, other DNA glycosylases, including uracil-DNA glycosylase and 8-oxoguanine glycosylase, which are involved in repairing deaminated bases and oxidative damage, also induced DDR. The early steps of BER therefore play a vital role in modulating the ATM-Chk2 DDR in response to base lesions, facilitating downstream BER processing for repair, in which the formation of a single-strand break was shown to play a critical role. Moreover, MPG knockdown rescued cell lethality, its overexpression led to cell death triggered by DNA damage and, more interestingly, higher MPG expression in breast and ovarian cancers corresponded with a greater probability of relapse-free survival after chemotherapy, underscoring the importance of glycosylase-dependent DDR. This study highlights the crosstalk between BER and DDR that contributes to maintaining genomic integrity and may have clinical applications in cancer therapy.
机译:DNA损伤反应(DDR)被多种遗传毒性胁迫激活。基本病变结构简单,主要通过基本切除修复(BER)固定,可触发共济失调性毛细血管扩张突变(ATM)-检查点激酶2(Chk2)途径,一种DDR成分。这些病变如何触发DDR尚不清楚。在这里,我们表明,对于烷基化损伤,ATM-Chk2依赖性DDR需要甲基嘌呤DNA糖基化酶(MPG)和嘌呤/嘧啶内切核酸酶1,两者都在BER早期起作用。另外,涉及修复脱氨基碱基和氧化损伤的其他DNA糖基化酶,包括尿嘧啶-DNA糖基化酶和8-氧鸟嘌呤糖基化酶,也诱导了DDR。因此,BER的早期步骤在调节ATM-Chk2 DDR以应对基础病变方面起着至关重要的作用,从而促进下游BER的修复处理,其中单链断裂的形成被证明是至关重要的。此外,MPG敲除挽救了细胞的致死性,其过表达导致了DNA损伤引发的细胞死亡,更有趣的是,乳腺癌和卵巢癌中MPG的较高表达与化疗后无复发生存的可能性较高相关,强调了糖基化酶的重要性从属DDR。这项研究突出了BER与DDR之间的串扰,有助于维持基因组完整性,并可能在癌症治疗中具有临床应用。

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