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首页> 外文期刊>DNA repair >XPC lymphoblastoid cells defective in the hMutSalpha DNA mismatch repair complex exhibit normal sensitivity to UVC radiation and normal transcription-coupled excision repair of DNA cyclobutane pyrimidine dimers.
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XPC lymphoblastoid cells defective in the hMutSalpha DNA mismatch repair complex exhibit normal sensitivity to UVC radiation and normal transcription-coupled excision repair of DNA cyclobutane pyrimidine dimers.

机译:在hMutSalpha DNA错配修复复合物中有缺陷的XPC淋巴母细胞对UVC辐射具有正常敏感性,对DNA环丁烷嘧啶二聚体具有正常的转录偶联切除修复。

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摘要

Nucleotide excision (NER) is generally considered to comprise two partially distinct subpathways. Global genomic repair (GGR) removes damage from the genome overall and transcription-coupled repair (TCR) selectively excises damage from transcribed DNA. Cells from individuals belonging to xeroderma pigmentosum (XP) complementation group C are defective in GGR but retain a functional TCR pathway. DNA mismatch repair (MMR) corrects replication errors but can also process DNA damage. It has been suggested that the essential hMutSalpha and hMutLalpha MMR protein complexes are also required for effective excision of UV-induced cyclobutane pyrimidine dimers (CPD) by TCR. We have combined an MMR and an XPC defect in a human lymphoblastoid cell line. The MMR-defective XPC cells were defective in the hMutSalpha mismatch recognition complex that comprises hMSH2 and hMSH6. They were not detectably more sensitive to killing by UV than their MMR proficient counterparts and were able to excise CPDs from an actively transcribed DNA strand. We conclude efficient TCR does not depend on a functional hMutSalpha complex.
机译:通常认为核苷酸切除(NER)包括两个部分不同的子途径。全局基因组修复(GGR)消除了整个基因组的损伤,而转录偶联修复(TCR)则选择性地消除了转录DNA的损伤。属于色素干皮症(XP)互补组C的个体的细胞在GGR中有缺陷,但保留了功能性TCR途径。 DNA错配修复(MMR)可以纠正复制错误,但也可以处理DNA损伤。已经提出,TCR有效切除UV诱导的环丁烷嘧啶二聚体(CPD)也需要必需的hMutSalpha和hMutLalpha MMR蛋白复合物。我们已经在人类淋巴母细胞系中合并了MMR和XPC缺陷。 MMR缺陷XPC细胞在包含hMSH2和hMSH6的hMutSalpha错配识别复合体中存在缺陷。他们对紫外线的杀灭没有比对MMR熟练的同行更敏感,并且能够从活跃转录的DNA链中切除CPD。我们得出结论,有效的TCR不依赖于功能性的hMutSalpha复合物。

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