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Genetic analysis of the PI3k/AKT/mTOR signaling pathway.

机译:PI3k / AKT / mTOR信号通路的遗传分析。

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摘要

Cancer is a leading cause of human death, and it is fundamentally attributable to dysfunctional cell signaling. The PI3K/AKT/mTOR pathway is an important pro-growth intracellular signaling cascade that is often inappropriately activated in a wide array of cancers. Efforts to develop anticancer drugs have therefore focused, in part, on identifying PI3K/AKT/mTOR pathway inhibitors. However, patient response to some such inhibitors is mixed, with some patients experiencing a paradoxical activation of the pathway following treatment. It is therefore necessary to better understand the nature of the PI3K/AKT/mTOR pathway and how it varies in different individuals. The work presented here used cell lines from families to measure the activity of three PI3K/AKT/mTOR pathway members (AKT1, p70S6K and 4E-BP1) in a variety of contexts, including under baseline cell growth conditions and in response to treatment with different PI3K/AKT/mTOR pathway inhibitors. Traditional genetic analyses were used to identify pathway activation phenotypes that were influenced by genetic variation, and genomic regions harboring variation were identified. A new tool for ranking candidate genes was developed and used to select promising genes within these regions for follow-up. Genotyping and association tests of SNPs in these genes identified four variants that were associated with two baseline PI3K/AKT/mTOR pathway activation phenotypes. These represent the first studies to find genetic variants that influence post-translational protein modifications. In addition, the identified SNPs may shed light on normal pathway function as well as new mechanisms for pathway inhibition.
机译:癌症是人类死亡的主要原因,并且从根本上归因于细胞信号功能异常。 PI3K / AKT / mTOR途径是重要的促生长细胞内信号传导级联,在多种癌症中通常不适当激活。因此,开发抗癌药物的努力部分集中在鉴定PI3K / AKT / mTOR途径抑制剂上。然而,患者对某些此类抑制剂的反应是混杂的,其中一些患者在治疗后经历了该通路的反常激活。因此,有必要更好地了解PI3K / AKT / mTOR途径的性质以及它在不同个体中的变化。此处介绍的工作使用了来自家族的细胞系来测量三种情况下的PI3K / AKT / mTOR途径成员(AKT1,p70S6K和4E-BP1)的活性,包括在基线细胞生长条件下以及对不同治疗的反应PI3K / AKT / mTOR途径抑制剂。传统的遗传分析被用来识别受遗传变异影响的途径激活表型,并鉴定出具有变异的基因组区域。开发了一种用于对候选基因进行排名的新工具,该工具用于在这些区域内选择有前途的基因进行后续研究。这些基因中SNP的基因分型和关联测试确定了与两个基线PI3K / AKT / mTOR途径激活表型相关的四个变异体。这些代表了寻找影响翻译后蛋白质修饰的遗传变异的第一项研究。此外,已鉴定的SNP可能揭示正常的途径功能以及抑制途径的新机制。

著录项

  • 作者

    Hutz, Janna Elizabeth.;

  • 作者单位

    Washington University in St. Louis.;

  • 授予单位 Washington University in St. Louis.;
  • 学科 Biology Molecular.;Biology Bioinformatics.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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