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Transcriptional bypass of regioisomeric ethylated thymidine lesions by T7 RNA polymerase and human RNA polymerase II

机译:T7 RNA聚合酶和人类RNA聚合酶II转录转录的区域异构的乙基化胸苷病灶

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Alkylative damage to DNA can be induced by environmental chemicals, endogenous metabolites and some commonly prescribed chemotherapeutic agents. The regioisomeric N3-, O2- and O4-ethylthymidine (N3-, O2- and O4-EtdT, respectively) represent an important class of ethylated DNA lesions. Using nonreplicative double-stranded vectors containing an N3-EtdT, O2-EtdT or O4-EtdT at a defined site in the template strand, herein we examined the effects of these lesions on DNA transcription mediated by single-subunit T7 RNA polymerase or multisubunit human RNA polymerase II in vitro and in human cells. We found that O4-EtdT is highly mutagenic and exclusively induces the misincorporation of guanine opposite the lesion, whereas N3-EtdT and O2-EtdT display promiscuous miscoding properties during transcription. In addition, N3-EtdT and O2-EtdT were found to inhibit strongly DNA transcription in vitro and in certain human cells. Moreover, N3-EtdT, but not O2-EtdT or O4-EtdT, is an efficient substrate for transcription-coupled nucleotide excision repair. These findings provide new important insights into how these alkylated DNA lesions compromise the flow of genetic information, which may help to understand the risk of these lesions in living cells.
机译:环境化学物质,内源性代谢产物和一些常用处方的化学治疗剂可引起DNA的烷基化损伤。区域异构体N3-,O 2 -和O 4 -乙基胸苷(N3-,O 2 -和O 4 -EtdT)分别代表一类重要的乙基化DNA损伤。使用在模板链中定义位点包含N3-EtdT,O 2 -EtdT或O 4 -EtdT的非复制性双链载体,在此我们检查了这些损伤在体外和在人细胞中由单亚基T7 RNA聚合酶或多亚基人RNA聚合酶II介导的DNA转录。我们发现O 4 -EtdT具有高度致突变性,并且仅诱导与病灶相对的鸟嘌呤的错误掺入,而N3-EtdT和O 2 -EtdT在转录过程中显示出混杂的错误编码特性。 。此外,N3-EtdT和O 2 -EtdT在体外和某些人类细胞中均能强烈抑制DNA转录。此外,N3-EtdT,而不是O 2 -EtdT或O 4 -EtdT,是转录偶联核苷酸切除修复的有效底物。这些发现为这些烷基化的DNA损伤如何损害遗传信息的流动提供了新的重要见解,这可能有助于了解活细胞中这些损伤的风险。

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