首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The xeroderma pigmentosum group C gene leads to selective repair of cyclobutane pyrimidine dimers rather than 6-4 photoproducts
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The xeroderma pigmentosum group C gene leads to selective repair of cyclobutane pyrimidine dimers rather than 6-4 photoproducts

机译:干燥皮色素C组基因导致选择性修复环丁烷嘧啶二聚体而不是6-4个光产物

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摘要

We investigated the contribution of the xeroderma pigmentosum group C (XPC) gene to DNA repair. We stably transfected XPC cells (XP4PA-SV-EB) with XPC cDNA and selected a partially corrected (XP4PA-SE1) and a fully corrected (XP4PA-SE2) clone. Cell survival after UVC (254 nm) exposure was low for XP4PA-SV-EB, intermediate for XP4PA-SE1, and normal for XP4PA-SE2 cells. XP4PA-SV-EB cells had undetectable XPC mRNA and protein levels. XP4PA-SE1 cells had 130% of normal mRNA but 25% of normal protein levels, whereas XP4PA-SE2 cells had an 18-fold mRNA overexpression and normal XPC protein levels compared with normal cells. We measured cyclobutane pyrimidine dimers (CPD) and 6-4 photoproducts (6-4PP) by using specific mAbs and the ELISA technique. XP4PA-SV-EB cells had no detectable removal of CPD or 6-4PP from their global genome by 24 h after 30 J/m2 UVC exposure. The partially corrected XP4PA-SE1 cells had normal repair of CPD but minimal repair of 6-4PP by 24 h, whereas the fully corrected XP4PA-SE2 cells regained normal CPD and 6-4PP repair capacities. We also exposed pRSVcat plasmid to UVC (to induce CPD and 6-4PP), to UVC + photolyase (to leave only 6-4PP on the plasmid), or to UVB + acetophenone (to induce only CPD). Host cell reactivation of UVB + acetophenone-, but not of UVC + photolyase-treated plasmids was normal in XP4PA-SE1 cells. Thus, increasing XPC gene expression leads to selective repair of CPD in the global genome. Undetectable XPC protein is associated with no repair of CPD or 6-4PP, detectable but subnormal XPC protein levels reconstitute CPD but not 6-4PP repair, and normal XPC protein levels fully reconstitute both CPD and 6-4PP repair.
机译:我们调查了干皮色素C组(XPC)基因对DNA修复的贡献。我们用XPC cDNA稳定转染了XPC细胞(XP4PA-SV-EB),并选择了部分校正(XP4PA-SE1)和完全校正(XP4PA-SE2)的克隆。对于XP4PA-SV-EB,UVC(254 nm)照射后的细胞存活率较低,对于XP4PA-SE1,细胞存活率较低,对于XP4PA-SE2细胞,细胞存活率正常。 XP4PA-SV-EB细胞具有无法检测到的XPC mRNA和蛋白质水平。 XP4PA-SE1细胞的正常mRNA水平为130%,但正常蛋白水平为25%,而XP4PA-SE2细胞的mRNA过表达和正常XPC蛋白水平是正常细胞的18倍。我们通过使用特异性mAb和ELISA技术测量了环丁烷嘧啶二聚体(CPD)和6-4光产物(6-4PP)。暴露于30 J / m 2 UVC后24 h,XP4PA-SV-EB细胞未检测到CPD或6-4PP从其整体基因组中去除。部分校正的XP4PA-SE1细胞在24 h内具有正常的CPD修复,但对6-4PP的修复极少,而完全校正的XP4PA-SE2细胞恢复了正常的CPD和6-4PP修复能力。我们还将pRSVcat质粒暴露于UVC(诱导CPD和6-4PP),UVC +光裂解酶(仅在质粒上保留6-4PP)或UVB +苯乙酮(仅诱导CPD)。在XP4PA-SE1细胞中,UVB +苯乙酮-而不是UVC +光解酶处理的质粒的宿主细胞活化是正常的。因此,增加XPC基因表达可导致全球基因组中CPD的选择性修复。无法检测到的XPC蛋白与CPD或6-4PP的无修复相关,可检测到但低于正常水平的XPC蛋白可重构CPD,但不能修复6-4PP,而正常XPC蛋白质水平则完全可以重构CPD和6-4PP修复。

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