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Function of replication protein A in DNA repair and cell checkpoints.

机译:复制蛋白A在DNA修复和细胞检查点中的功能。

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摘要

Replication Protein A (RPA), the major eukaryotic single-strand DNA (ssDNA) binding protein, is essential for replication, repair, recombination, and checkpoint activation. Defects in RPA-associated cellular activities lead to genomic instability, a major factor in the pathogenesis of cancer. The ssDNA-binding activity of RPA is primarily mediated by two domains in the RPA1 subunit. I characterized mutant forms of RPA to elucidate the contribution of specific residues in the high affinity DNA binding domains to the cellular function of RPA. These studies enhance the understanding of the properties of RPA that contribute to DNA repair and cellular checkpoints.;Mutation of a conserved leucine residue to proline in the high-affinity DNA binding site of RPA (residue L221 in human RPA) has been shown to have a high rate of chromosomal rearrangements in yeast and mice. I characterized the equivalent mutation in human RPA. My studies show that the mutation causes a defect in ssDNA binding and a nonfunctional protein. Combined with the mice studies, the data suggest that haploinsufficiency of RPA causes an increase in DNA damage and in the incidence of cancer.;The ssDNA-interactions of the high affinity binding domains in RPA1 are mediated by several residues including four highly conserved aromatic residues. Mutation of these residues had no effect on DNA replication but caused defects in DNA repair pathways. I conclude that DNA intermediates in different DNA metabolic pathways require different RPA binding functions and that the aromatic residues are indispensable for binding in DNA repair.;These studies illustrate that different DNA metabolic pathways have distinct requirements for RPA function. A decrease in binding to ssDNA of any length has specific consequences in vivo. These data also demonstrate that a single mutation in RPA in a residue that does not even contact ssDNA can result in a non-functional RPA complex. I conclude that even a modest decrease in RPA protein levels is not compatible with long term cell survival. Taken together, these studies highlight the importance of proper regulation of RPA protein levels and its ssDNA binding affinity to proper maintenance of the integrity of the genome.
机译:复制蛋白A(RPA)是主要的真核单链DNA(ssDNA)结合蛋白,对于复制,修复,重组和检查点激活至关重要。 RPA相关细胞活性的缺陷导致基因组不稳定,这是癌症发病机理中的主要因素。 RPA的ssDNA结合活性主要由RPA1亚基中的两个结构域介导。我对RPA的突变形式进行了表征,以阐明高亲和力DNA结合域中特定残基对RPA细胞功能的贡献。这些研究增强了对有助于DNA修复和细胞检查点的RPA特性的理解。已证明将RPA高亲和力DNA结合位点(人RPA中的残基L221)的保守亮氨酸残基突变为脯氨酸。酵母和小鼠中的染色体重排率很高。我描述了人RPA中的等效突变。我的研究表明,这种突变会导致ssDNA结合缺陷和无功能的蛋白质。结合小鼠研究,数据表明RPA的单倍剂量不足会导致DNA损伤和癌症的发生率增加; RPA1中高亲和力结合域的ssDNA相互作用是由几个残基介导的,其中包括四个高度保守的芳香族残基。这些残基的突变对DNA复制没有影响,但会导致DNA修复途径的缺陷。我的结论是,不同的DNA代谢途径中的DNA中间体需要不同的RPA结合功能,并且芳香族残基对于DNA修复中必不可少的结合。这些研究表明,不同的DNA代谢途径对RPA功能有不同的要求。与任何长度的ssDNA的结合减少都会在体内产生特定的后果。这些数据还表明,甚至不与ssDNA接触的残基中RPA的单个突变也可能导致无功能的RPA复合物。我得出的结论是,即使RPA蛋白水平适度下降也与长期细胞存活率不相容。综上所述,这些研究强调了正确调节RPA蛋白水平及其ssDNA结合亲和力对正确维护基因组完整性的重要性。

著录项

  • 作者

    Hass, Cathy Staloch.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Biology Molecular.;Biology Cell.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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