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Multiple DNA binding domains mediate the function of ERCC1-XPF in nucleotide excision repair and interstrand crosslink repair.

机译:多个DNA结合域介导ERCC1-XPF在核苷酸切除修复和链间交联修复中的功能。

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摘要

Structure-specific endonucleases are widespread enzymes that incise phosphodiester bonds in DNA and play key roles in DNA transactions including the maintenance of genome stability. One such enzyme is ERCC1-XPF, which cleaves single-stranded/double-stranded DNA junctions, and is involved in nucleotide excision repair (NER), interstrand crosslink (ICL) repair, homologous recombination, and other pathways. Defects in ERCC1-XPF lead to several hereditary diseases, like xeroderma pigmentosum, XFE progeroid syndrome, cranio-occulo-facio-skeletal syndrome, and Fanconi anemia.;In NER, ERCC1-XPF is recruited to DNA lesions by interaction with XPA and incises the DNA 5' to the lesion. In this dissertation, the roles of the four C-terminal DNA binding domains in mediating NER activity and cleavage of model substrates were studied. It was found that mutations in the helix-hairpin-helix domain of ERCC1 and the nuclease domain of XPF abolished cleavage activity on model substrates. Interestingly, mutations in multiple DNA binding domains were required to significantly diminish NER activity, suggesting that interactions with proteins in the NER incision complex can compensate for some defects in DNA binding. These studies demonstrate that multiple domains of ERCC1-XPF contribute to substrate binding, and are consistent with the hypothesis that multiple weak protein-DNA and protein-protein interactions drive progression through the NER pathway.;In addition, DNA binding residues of ERCC1-XPF were found to be more important for ICL repair than for NER. Impairment of DNA binding of ERCC1-XPF rendered cells more sensitive to exposure to crosslinking agents than to UV, suggesting tighter substrate binding by ERCC1-XPF is needed for ICL repair than for NER. Intriguingly, subsequent to our studies, mutations in DNA binding residues of XPF were found in Fanconi anemia patients, who have defects in ICL repair, showing that mutations in DNA binding domains of ERCC1-XPF can have pathway-specific pathogenic consequences in humans.
机译:结构特异性核酸内切酶是广泛的酶,可在DNA中切割磷酸二酯键并在DNA交易(包括维持基因组稳定性)中发挥关键作用。一种这样的酶是ERCC1-XPF,它切割单链/双链DNA连接,并参与核苷酸切除修复(NER),链间交联(ICL)修复,同源重组和其他途径。 ERCC1-XPF的缺陷会导致多种遗传性疾病,例如色素性干皮病,XFE早衰综合征,颅-囊-筋膜-骨骼综合征和Fanconi贫血。病变的5'DNA。本文研究了四个C末端DNA结合结构域在介导NER活性和模型底物裂解中的作用。发现ERCC1的螺旋-发夹-螺旋结构域和XPF的核酸酶结构域中的突变消除了对模型底物的切割活性。有趣的是,需要多个DNA结合域中的突变来显着降低NER活性,这表明与NER切口复合物中的蛋白质相互作用可以弥补DNA结合中的某些缺陷。这些研究表明ERCC1-XPF的多个结构域有助于底物结合,并且与多个弱蛋白-DNA和蛋白-蛋白相互作用通过NER途径推动进展的假说相符;此外,ERCC1-XPF的DNA结合残基。被发现对ICL修复比对NER更重要。 ERCC1-XPF的DNA结合受损使细胞对暴露于交联剂的敏感性高于对UV的敏感性,这表明与NER相比,ICL修复更需要ERCC1-XPF的底物结合。有趣的是,在我们的研究之后,在患有ICL修复缺陷的Fanconi贫血患者中发现XPF的DNA结合残基发生突变,这表明ERCC1-XPF的DNA结合域中的突变可对人类产生特定途径的致病性后果。

著录项

  • 作者

    Su, Yan.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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