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Roles of the DNA methylation machinery in cellular transformation and tumorigenesis.

机译:DNA甲基化机制在细胞转化和肿瘤发生中的作用。

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摘要

DNA methylation is vital in genome functions as diverse as parental imprinting, X chromosome inactivation, regulation of gene expression and precipitation of inactive chromatin structures. A growing line of evidence suggests that aberrations in proper homeostatic regulation of genomic methylation status are causal in oncogenic processes. Recent evidence has also revealed novel roles of the DNA Methyltransferase (DNMT1), the enzyme believed to be largely responsible for maintenance of the DNA methylation pattern, in replication and in direct regulation of chromatin structure which may help to explain its role in cancer. Despite the importance of DNMT1 in the regulation in many critical genome functions, little has been done to clearly elucidate its regulation of expression. Chapters 1--3 of this thesis describe three intriguing mechanisms employed in the regulation of dnmt1 gene expression which further implicate this protein as an important player in cellular transformation and tumorigenesis. Chapter 1 describes dnmt1 as a novel downstream effector of the commonly studied T Antigen oncogenic signaling pathway and points to a novel mechanism by which DNMT1 inhibitors might target tumorigenesis. dnmt1 has also been previously characterized as an effector of the Ras-jun oncogenic signaling pathway and Chapter 2 describes how the c-jun proto-oncogene can recruit and synergize with the tumor suppressor Rb to transactivate dnmt1. Chapter 3 describes a novel and unique mechanism by which dnmt1 can feedback regulate its own expression via methylation of its own promoter. The discovery of active demethylation activity in transformed cell types has also changed our understanding of genomic methylation as a means of epigenetic control and suggests the possibility that aberrant regulation of a demethylase gene may also contribute to cellular transformation and tumorigenesis. Chapter 4, therefore, describes the upregulation of Mbd2/Demethylase in various human tumors and the inhibition of tumorigenesis observed in vitro and in vivo upon treatment with Mbd2/Demethylase antisense inhibition. These results point towards a critical role for the methylation machinery and homeostatic control of the genomic methylation status in cancer and suggest a strong potential for anticancer therapeutics which target the DNA methylation machinery.
机译:DNA甲基化在基因组功能中至关重要,这些功能包括父母亲印记,X染色体失活,基因表达调控和非活性染色质结构沉淀。越来越多的证据表明,在基因组甲基化状态的适当稳态调节中的畸变是致癌过程的原因。最近的证据还揭示了DNA甲基转移酶(DNMT1)的新作用,该酶被认为在复制和直接调节染色质结构中主要负责维持DNA甲基化模式,这可能有助于解释其在癌症中的作用。尽管DNMT1在许多关键基因组功能的调节中很重要,但几乎没有做清楚阐明其表达调节的工作。本论文的第1--3章描述了dnmt1基因表达调控中使用的三种有趣机制,这些机制进一步暗示了该蛋白在细胞转化和肿瘤发生中起着重要的作用。第1章将dnmt1描述为常用研究的T抗原致癌信号通路的新型下游效应子,并指出DNMT1抑制剂可能靶向肿瘤发生的新机制。 dnmt1以前也曾被描述为Ras-jun致癌信号通路的效应子,第二章描述了c-jun原癌基因如何募集并与肿瘤抑制因子Rb协同作用来激活dnmt1。第3章介绍了一种新颖独特的机制,dnmt1可以通过其自身启动子的甲基化反馈调节其自身表达。转化细胞类型中活性脱甲基活性的发现也改变了我们对基因组甲基化作为表观遗传控制手段的理解,并暗示了脱甲基酶基因异常调节也可能有助于细胞转化和肿瘤发生的可能性。因此,第4章描述了在各种人类肿瘤中Mbd2 / Demethylase的上调和在用Mbd2 / Demethylase反义抑制治疗后在体内和体外观察到的肿瘤发生的抑制作用。这些结果指出了甲基化机制和癌症中基因组甲基化状态的稳态控制的关键作用,并表明了针对DNA甲基化机制的抗癌治疗剂的强大潜力。

著录项

  • 作者

    Slack, Andrew D.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Health Sciences Pharmacology.;Biology Molecular.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 286 p.
  • 总页数 286
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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