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Transcription bypass of DNA lesions enhances cell survival but attenuates transcription coupled DNA repair

机译:DNA损伤的转录旁路可提高细胞存活率,但会减弱转录偶联的DNA修复

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摘要

Transcription-coupled DNA repair (TCR) is a sub-pathway of nucleotide excision repair (NER) dedicated to rapid removal of DNA lesions in the transcribed strand of actively transcribed genes. The precise nature of the TCR signal and how the repair machinery gains access to lesions imbedded in stalled RNA polymerase II (RNAP II) complexes in eukaryotic cells are still enigmatic. RNAP II has an intrinsic capacity for transcription bypass of DNA lesions by incorporation or misincorporation of nucleotides across the lesions. It has been suggested that transcription bypass of lesions, which exposes the lesions, may be required for TCR. Here, we show that E1103G mutation of Rpb1, the largest subunit of RNAP II, which promotes transcription bypass of UV-induced cyclobutane pyrimidine dimers (CPDs), increases survival of UV irradiated yeast cells but attenuates TCR. The increased cell survival is independent of any NER subpathways. In contrast, G730D mutation of Rpb1, which impairs transcription bypass of CPDs, enhances TCR. Our results suggest that transcription bypass of lesions attenuates TCR but enhances cell tolerance to DNA lesions. Efficient stalling of RNAP II is essential for efficient TCR.
机译:转录偶联DNA修复(TCR)是核苷酸切除修复(NER)的子途径,专用于快速去除活跃转录基因的转录链中的DNA损伤。 TCR信号的确切性质以及修复机制如何进入真核细胞中停滞的RNA聚合酶II(RNAP II)复合物中的损伤仍是谜团。 RNAP II具有通过跨病变的核苷酸掺入或错误掺入DNA病变进行转录旁路的固有能力。已经提出TCR可能需要暴露损伤的损伤的转录旁路。在这里,我们显示Rpb1的E1103G突变是RNAP II的最大亚基,它促进了UV诱导的环丁烷嘧啶二聚体(CPDs)的转录旁路,增加了UV辐射酵母细胞的存活率,但减弱了TCR。增加的细胞存活率独立于任何NER子途径。相反,Rpb1的G730D突变会削弱CPD的转录旁路,从而增强TCR。我们的结果表明,病灶的转录旁路可减弱TCR,但可增强细胞对DNA病灶的耐受性。 RNAP II的有效停滞对于有效的TCR至关重要。

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