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Elucidating the functions of the MutSalpha complex in MMR and tumor suppression.

机译:阐明MutSalpha复合物在MMR和肿瘤抑制中的功能。

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摘要

The DNA mismatch repair (MMR) system has evolved in both highly conserved and highly complex manner like many other genome maintenance systems that are selected for during the evolution of life. MMR plays an essential role in genome maintenance by removing post-replication errors and by mediating a DNA damage response. Eukaryotic MMR is a complex system that requires the interactions of several MutS and MutL proteins for the initiation of the repair reaction. I have been focusing on functional studies of the MutSalpha complex, consisting of Msh2 and Msh6, during my doctoral studies. Despite intensive research efforts about MutSalpha complexes, many of the functions of MutSalpha in DNA repair and damage response still need to be elucidated. I generated three different MutSalpha-defective mouse models to elucidate the role of each of the two complex protein in the different functions of MMR with a special emphasis on their roles in tumor suppression. The specific aims of my study were: (1) To study the impact of Msh2 missense mutations on intestinal tumorigenesis in conditional Msh2 knockout mice. We generated and utilized the Msh2loxP;Villin-cre mice (preclinical HNPCC model) to determine the response of tumors carrying an Msh2 knockout or a Msh2GD "separation of function" mutation to chemotherapeutic treatment. (2) To determine the roles of MutSalpha in the repair of oxidative DNA damage and its significance for tumor suppression. To obtain more conclusive information regarding how defects in 8-oxoG repair is connected to cancer predisposition, we generated the MutSalphaEA mutant mouse model carrying the Msh6EA mutation in which the repair of 8-oxoG by MutSalpha is defective. High mutation frequencies caused by the accumulation of 8-oxoguanine and defects in cell cycle checkpoint signaling lead increased tumor susceptibility in Msh6EA/EA mice. (3) To examine the roles of MutSalpha in MMR mediated DNA-Damage Signaling. The Msh6SI/SI mutant mouse line has a defect in DNA damage signaling function, although it retains the normal MMR function. Studying this mutant mouse model will allow the further dissection of their MMR functions and provide information about the significance of the MMR-dependent DNA damage response function in tumorigenesis.
机译:像许多其他在生命进化过程中选择的基因组维持系统一样,DNA错配修复(MMR)系统以高度保守和高度复杂的方式进化。 MMR通过消除复制后错误和介导DNA损伤反应,在基因组维护中起着至关重要的作用。真核MMR是一个复杂的系统,需要几种MutS和MutL蛋白相互作用才能启动修复反应。在我的博士研究期间,我一直专注于由Msh2和Msh6组成的MutSalpha复合体的功能研究。尽管已对MutSalpha复合物进行了深入研究,但仍需要阐明MutSalpha在DNA修复和损伤反应中的许多功能。我生成了三种不同的MutSalpha缺陷小鼠模型,以阐明两种复合蛋白在MMR的不同功能中的作用,并特别强调了它们在肿瘤抑制中的作用。我的研究的具体目标是:(1)研究Msh2错义突变对条件Msh2基因敲除小鼠肠道肿瘤发生的影响。我们生成并利用了Msh2loxP; Villin-cre小鼠(临床前HNPCC模型)来确定携带Msh2基因敲除或Msh2GD“功能分离”突变的肿瘤对化疗的反应。 (2)确定MutSalpha在修复氧化性DNA损伤中的作用及其对肿瘤抑制的意义。为了获得有关8-oxoG修复中的缺陷如何与癌症易感性相关的更多结论性信息,我们生成了携带Msh6EA突变的MutSalphaEA突变小鼠模型,其中MutSalpha对8-oxoG的修复有缺陷。由8-氧鸟嘌呤的积累和细胞周期检查点信号缺陷引起的高突变频率导致Msh6EA / EA小鼠的肿瘤易感性增加。 (3)研究MutSalpha在MMR介导的DNA损伤信号传导中的作用。 Msh6SI / SI突变小鼠系虽然保留了正常的MMR功能,但在DNA损伤信号传导功能上存在缺陷。研究这种突变小鼠模型将允许进一​​步剖析其MMR功能,并提供有关MMR依赖性DNA损伤应答功能在肿瘤发生中的重要性的信息。

著录项

  • 作者

    Lee, Kye-Ryoung.;

  • 作者单位

    Yeshiva University.;

  • 授予单位 Yeshiva University.;
  • 学科 Biology Molecular.;Biology Genetics.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;细胞生物学;遗传学;
  • 关键词

  • 入库时间 2022-08-17 11:37:57

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