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人XPA与丝裂霉素C-DNA链间交联的优先结合以及砷和镉的调节作用

Preferential binding of human XPA to the mitomycin C-DNA interstrand crosslink and modulation by arsenic and cadmium.

作者信息

Mustra David J, Warren Amy J, Wilcox Dean E, Hamilton Joshua W

机构信息

Department of Pharmacology & Toxicology, Dartmouth Medical School, Hanover, NH 03755-3835, USA.

出版信息

Chem Biol Interact. 2007 Jun 30;168(2):159-68. doi: 10.1016/j.cbi.2007.04.004. Epub 2007 Apr 19.

Abstract

The Xeroderma Pigmentosum A (XPA) protein is involved in the DNA damage recognition and repair complex formation steps of nucleotide excision repair (NER), and has been shown to preferentially bind to various forms of DNA damage including bulky lesions. DNA interstrand crosslinks are of particular interest as a form of DNA damage, since these lesions involve both strands of duplex DNA and present special challenges to the repair machinery, and mitomycin C (MMC) is one of several useful cancer chemotherapy drugs that induce these lesions. Purified XPA and the minimal DNA-binding domain of XPA are both fully capable of preferentially binding to MMC-DNA interstrand crosslinks in the absence of other proteins from the NER complex. Circular dichroism (CD) and gel shift assays were used to investigate XPA-DNA binding and to assess changes in secondary structure induced as a consequence of the interaction of XPA with model MMC-crosslinked and unmodified DNAs. These studies revealed that while XPA demonstrates only a modest increase in affinity for adducted DNA, it adopts a different conformation when bound to MMC-damaged DNA than when bound to undamaged DNA. This change in conformation may be more important in recruiting other proteins into a competent NER complex at damaged sites than preferential binding per se. Arsenic had little effect on XPA binding even at toxic concentrations, whereas cadmium reduced XPA binding to DNA to 10-15% that of Zn-XPA, and zinc addition could only partially restore activity. In addition, there was little or no change in conformation when Cd-XPA bound MMC-crosslinked DNA even though it demonstrated preferential binding, which may contribute to the mechanism by which cadmium can act as a co-mutagen and co-carcinogen.

摘要

着色性干皮病A(XPA)蛋白参与核苷酸切除修复(NER)的DNA损伤识别和修复复合物形成步骤,并且已显示其优先结合包括大的损伤在内的各种形式的DNA损伤。DNA链间交联作为一种DNA损伤形式特别受关注,因为这些损伤涉及双链DNA的两条链,给修复机制带来特殊挑战,而丝裂霉素C(MMC)是诱导这些损伤的几种有用的癌症化疗药物之一。在没有NER复合物中的其他蛋白质的情况下,纯化的XPA和XPA的最小DNA结合结构域都完全能够优先结合MMC-DNA链间交联。利用圆二色性(CD)和凝胶迁移试验研究XPA与DNA的结合,并评估由于XPA与模型MMC交联和未修饰的DNA相互作用而诱导的二级结构变化。这些研究表明,虽然XPA对加合DNA的亲和力仅适度增加,但与未损伤的DNA结合时相比,它与MMC损伤的DNA结合时会采用不同的构象。这种构象变化在将其他蛋白质募集到损伤位点的有活性的NER复合物中可能比优先结合本身更重要。即使在有毒浓度下,砷对XPA结合也几乎没有影响,而镉将XPA与DNA的结合降低至锌-XPA的10-15%,添加锌只能部分恢复活性。此外,当Cd-XPA结合MMC交联的DNA时,即使它表现出优先结合,构象也几乎没有变化,这可能有助于解释镉作为共诱变剂和共致癌物的作用机制。

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