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首页> 外文期刊>Biochemistry >Photo-cross-linking of XPC-Rad23B to cisplatin-damaged DNA reveals contacts with both strands of the DNA duplex and spans the DNA adduct
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Photo-cross-linking of XPC-Rad23B to cisplatin-damaged DNA reveals contacts with both strands of the DNA duplex and spans the DNA adduct

机译:XPC-Rad23B与顺铂损坏的DNA的光交联揭示了与DNA双链体的两条链的接触并跨越了DNA加合物

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Nucleotide excision repair (NER) is the main pathway used for the repair of bulky DNA adducts such as those caused by UV light exposure and the chemotherapeutic drug cisplatin. The xeroderma pigmentosum group C (XPC)-Rad23B complex is involved in the recognition of these bulky DNA adducts and initiates the global genomic nucleotide excision repair pathway (GG-NER). Photo-cross-linking experiments revealed that the human XPC-Rad23B complex makes direct contact with both the cisplatin-damaged DNA strand and the complementary undamaged strand of a duplex DNA substrate. Coupling photo-cross-linking with denaturation and immunoprecipitation of protein-DNA complexes, we identified the XPC subunit in complex with damaged DNA. While the interaction of the XPC subunit with DNA was direct, studies revealed that although Rad23B was found in complex with DNA, the Rad23B-DNA interaction was largely indirect via its interaction with XPC. Using site specific cross-linking, we determined that the XPC-Rad23B complex is preferentially cross-linked to the damaged DNA when the photo-reactive FAP-dCMP (exo-N-{2-[N-(4-azido-2,5-difluoro-3-chloropyridin-6-yl) -3-aminopropionyl]aminoethyl}-2'-deoxycytidine 5'-monophosphate) analogue is located to the 5' side of the cisplatin-DNA adduct. When the FAP-dCMP analogue is located to the 3' side of the adduct, no difference in binding was detected between undamaged and damaged DNA. Collectively, these data suggest a model in which XPC-DNA interactions drive the damage recognition process contacting both the damaged and undamaged DNA strand. Preferential cross-linking 5' of the cisplatin-damaged site suggests that the XPC-Rad23B complex displays orientation specific binding to eventually impart directionality to the downstream binding and incision events relative to the site of DNA damage.
机译:核苷酸切除修复(NER)是修复庞大的DNA加合物(例如由紫外线照射和化学治疗药物顺铂引起的那些)的主要途径。干燥皮肤色素C组(XPC)-Rad23B复合物参与了对这些庞大的DNA加合物的识别,并启动了整体基因组核苷酸切除修复途径(GG-NER)。光交联实验表明,人XPC-Rad23B复合物与顺铂损坏的DNA链和双链DNA底物的互补未损坏链都直接接触。结合光-交联与蛋白质-DNA复合物的变性和免疫沉淀,我们鉴定了复合物与受损DNA的XPC亚基。虽然XPC亚基与DNA的相互作用是直接的,但研究表明,尽管发现Rad23B与DNA形成复合物,但Rad23B与DNA的相互作用很大程度上是通过与XPC的相互作用而进行的。使用位点特异性交联,我们确定当光反应性FAP-dCMP(exo-N- {2- [N-(4-azido-2, 5-二氟-3-氯吡啶基-6-基)-3-氨基丙酰基]氨基乙基} -2'-脱氧胞苷5'-单磷酸)类似物位于顺铂-DNA加合物的5'侧。当FAP-dCMP类似物位于加合物的3'侧时,在未损坏和受损的DNA之间未检测到结合差异。总而言之,这些数据提出了一个模型,其中XPC-DNA相互作用驱动损伤识别过程接触已损坏和未损坏的DNA链。顺铂损伤位点的优选交联5'表明,XPC-Rad23B复合物显示方向特异性结合,最终赋予下游结合和相对于DNA损伤位点的切口事件方向性。

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