Anastasia Tsaalbi-Shtylik , Cécile Mingard , Michael Räz , Rurika Oka , Freek Manders , Ruben Van Boxtel , Niels De Wind , Shana J. Sturla
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Using purified Pol ζ we describe that the enzyme can misincorporate thymidine opposite <em>O</em><sup>6</sup>-medG and efficiently extend from terminal mismatches, suggesting its involvement in the mutagenicity of <em>O</em><sup>6</sup>-medG. Surprisingly, O6-medG lesions induced by the methylating agent <em>N</em>-methyl-<em>N’</em>-nitro-<em>N</em>-nitrosoguanidine (MNNG) appeared more, rather than less, mutagenic in Pol ζ-deficient mouse embryonic fibroblasts (MEFs) than in wild type MEFs. This suggested that <em>in vivo</em> Pol ζ participates in non-mutagenic TLS of <em>O</em><sup>6</sup>-medG. However, we found that the Pol ζ-dependent misinsertions at O<sup>6</sup>-medG lesions are efficiently corrected by DNA mismatch repair (MMR), which masks the error-proneness of Pol ζ. We also found that the MNNG-induced mutational signature is determined by the adduct spectrum, and modulated by MMR. The signature mimicked single base substitution signature 11 in the catalogue of somatic mutations in cancer, associated with treatment with the methylating drug temozolomide. Our results unravel the individual roles of the major contributors to methylating drug-induced mutagenesis. Moreover, these results warrant caution as to the classification of TLS as mutagenic or error-free based on <em>in vitro</em> data or on the analysis of mutations induced in MMR-proficient cells.</p></div>","PeriodicalId":300,"journal":{"name":"DNA Repair","volume":"142 ","pages":"Article 103755"},"PeriodicalIF":3.0000,"publicationDate":"2024-08-25","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S1568786424001319/pdfft?md5=adfde92ff0c0aeab09681d19792fe1bd&pid=1-s2.0-S1568786424001319-main.pdf","citationCount":"0","resultStr":"{\"title\":\"DNA mismatch repair controls the mutagenicity of Polymerase ζ-dependent translesion synthesis at methylated guanines\",\"authors\":\"Anastasia Tsaalbi-Shtylik , Cécile Mingard , Michael Räz , Rurika Oka , Freek Manders , Ruben Van Boxtel , Niels De Wind , Shana J. 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引用次数: 0
摘要
通过复制受损的核苷酸,容易出错的 DNA 转座合成(TLS)可使复制得以完成,尽管这要以牺牲保真度为代价。螺旋扭曲 DNA 病变的 TLS 通常会降低碱基配对能力,包括插入病变对面,然后延伸,后者尤其由聚合酶ζ(Pol ζ)完成。然而,人们对 Pol ζ 参与非扭曲性或扭曲性差但编码混乱的病变(如 O6-甲基脱氧鸟苷(O6-medG))的 TLS 的情况知之甚少。利用纯化的 Pol ζ,我们发现该酶能错结合与 O6-medG 相对的胸苷,并有效地从末端错配延伸,这表明它参与了 O6-medG 的诱变作用。令人惊讶的是,甲基化剂 N-甲基-N'-硝基-N-亚硝基胍(MNNG)诱导的 O6-medG 病变在 Pol ζ缺陷的小鼠胚胎成纤维细胞(MEFs)中比在野生型 MEFs 中诱变性更强,而不是更弱。这表明体内 Pol ζ 参与了 O6-medG 的非致突变 TLS。然而,我们发现,DNA错配修复(MMR)可有效纠正 O6-medG 病变处的 Pol ζ依赖性错插入,这掩盖了 Pol ζ的错误倾向性。我们还发现,MNNG 诱导的突变特征由加合物谱决定,并受 MMR 调节。该特征模仿了癌症体细胞突变目录中与甲基化药物替莫唑胺治疗相关的单碱基置换特征11。我们的研究结果揭示了甲基化药物诱发突变的主要因素的各自作用。此外,根据体外数据或甲基化还原酶缺陷细胞诱导的突变分析,将 TLS 归类为诱变或无误,这些结果值得警惕。
DNA mismatch repair controls the mutagenicity of Polymerase ζ-dependent translesion synthesis at methylated guanines
By replicating damaged nucleotides, error-prone DNA translesion synthesis (TLS) enables the completion of replication, albeit at the expense of fidelity. TLS of helix-distorting DNA lesions, that usually have reduced capacity of basepairing, comprises insertion opposite the lesion followed by extension, the latter in particular by polymerase ζ (Pol ζ). However, little is known about involvement of Pol ζ in TLS of non- or poorly-distorting, but miscoding, lesions such as O6-methyldeoxyguanosine (O6-medG). Using purified Pol ζ we describe that the enzyme can misincorporate thymidine opposite O6-medG and efficiently extend from terminal mismatches, suggesting its involvement in the mutagenicity of O6-medG. Surprisingly, O6-medG lesions induced by the methylating agent N-methyl-N’-nitro-N-nitrosoguanidine (MNNG) appeared more, rather than less, mutagenic in Pol ζ-deficient mouse embryonic fibroblasts (MEFs) than in wild type MEFs. This suggested that in vivo Pol ζ participates in non-mutagenic TLS of O6-medG. However, we found that the Pol ζ-dependent misinsertions at O6-medG lesions are efficiently corrected by DNA mismatch repair (MMR), which masks the error-proneness of Pol ζ. We also found that the MNNG-induced mutational signature is determined by the adduct spectrum, and modulated by MMR. The signature mimicked single base substitution signature 11 in the catalogue of somatic mutations in cancer, associated with treatment with the methylating drug temozolomide. Our results unravel the individual roles of the major contributors to methylating drug-induced mutagenesis. Moreover, these results warrant caution as to the classification of TLS as mutagenic or error-free based on in vitro data or on the analysis of mutations induced in MMR-proficient cells.
期刊介绍:
DNA Repair provides a forum for the comprehensive coverage of DNA repair and cellular responses to DNA damage. The journal publishes original observations on genetic, cellular, biochemical, structural and molecular aspects of DNA repair, mutagenesis, cell cycle regulation, apoptosis and other biological responses in cells exposed to genomic insult, as well as their relationship to human disease.
DNA Repair publishes full-length research articles, brief reports on research, and reviews. The journal welcomes articles describing databases, methods and new technologies supporting research on DNA repair and responses to DNA damage. Letters to the Editor, hot topics and classics in DNA repair, historical reflections, book reviews and meeting reports also will be considered for publication.