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Localization of xeroderma pigmentosum group A protein and replication protein A on damaged DNA in nucleotide excision repair

机译:色素干皮修复中干皮色素A族蛋白和复制蛋白A在受损DNA上的定位

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摘要

The interaction of xeroderma pigmentosum group A protein (XPA) and replication protein A (RPA) with damaged DNA in nucleotide excision repair (NER) was studied using model dsDNA and bubble-DNA structure with 5-{3-[6-(carboxyamido-fluoresceinyl)amidocapromoyl]allyl}-dUMP lesions in one strand and containing photoreactive 5-iodo-dUMP residues in defined positions. Interactions of XPA and RPA with damaged and undamaged DNA strands were investigated by DNA–protein photocrosslinking and gel shift analysis. XPA showed two maximums of crosslinking intensities located on the 5′-side from a lesion. RPA mainly localized on undamaged strand of damaged DNA duplex and damaged bubble-DNA structure. These results presented for the first time the direct evidence for the localization of XPA in the 5′-side of the lesion and suggested the key role of XPA orientation in conjunction with RPA binding to undamaged strand for the positioning of the NER preincision complex. The findings supported the mechanism of loading of the heterodimer consisting of excision repair cross-complementing group 1 and xeroderma pigmentosum group F proteins by XPA on the 5′-side from the lesion before damaged strand incision. Importantly, the proper orientation of XPA and RPA in the stage of preincision was achieved in the absence of TFIIH and XPG.
机译:利用模型dsDNA和带有5- {3- [6-(羧基酰胺基-)的bubble-DNA结构,研究了干性色素干细菌A组蛋白(XPA)和复制蛋白A(RPA)与受损DNA在核苷酸切除修复(NER)中的相互作用。荧光素一酰胺基丙酰胺基烯丙基} -dUMP损伤位于一条链中,且在定义的位置含有光反应性的5-碘-dUMP残基。 XPA和RPA与受损和未损坏的DNA链的相互作用通过DNA-蛋白质光交联和凝胶位移分析进行了研究。 XPA显示位于病变5'侧的两个最大交联强度。 RPA主要位于受损的DNA双链体和受损的Bubble-DNA结构的未损坏链上。这些结果首次提供了XPA在病变5'侧定位的直接证据,并暗示XPA定向结合RPA结合未受损链对NER预切口复合体定位的关键作用。这些发现支持了在损伤的链切开之前从病变的5'侧通过XPA加载由切除修复交叉互补组1和干性色素F组蛋白组成的异二聚体的机制。重要的是,在没有TFIIH和XPG的情况下,可以在切开前获得XPA和RPA的正确定向。

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