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Translational control of cancer: An exploration of eIF4E and its role in cellular oncogenic transformation.

机译:癌症的翻译控制:eIF4E的探索及其在细胞致癌转化中的作用。

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摘要

Cancer is currently the 2nd leading cause of death in the U.S., responsible for approximately one quarter of the annual death rate. While cancer is genetically diverse, we suspect there may be common components of the cellular machinery where oncogenic signals converge, and that these critical regulatory nodes may represent molecular targets for new therapies. My approach derives from recent work on human breast and lung carcinoma, and murine models of lymphoid malignancies; which identify the cap-dependent protein synthesis machinery as a critical point of convergence and amplification of oncogenic signals emanating from the Ras/PI3K/Akt cascade. The rate limiting step in protein synthesis is initiation, mediated by the trimeric protein eukaryotic initiation factor 4F (eIF4F). The limiting component of eIF4F is the mRNA cap-binding protein, eukaryotic initiation factor 4E (eIF4E). Over expression of eIF4E transforms immortalized rodent fibroblasts and confers primary human cells with several cancer-related functions including decreased growth factor requirement for proliferation and survival, colony formation and anchorage independence. However, until very recently all experiments examining the oncogenic potential of eIF4E have involved constitutive over expression in stably transfected cell lines; leaving uncertain precisely which oncogenic functions could be ascribed directly to eIF4E, and which relate to its ability to suppress apoptosis - thus creating a permissive environment for subsequent oncogenic mutations. I have developed a high fidelity eIF4E inducible system which allows me to abruptly activate eIF4E over expression. With this system I am able to establish a direct connection between eIF4E induction and autonomous cell proliferation. I have also been able to specify the cell cycle kinetics which occurs after eIF4E induction, including the ability of eIF4E to bypass growth factor initiation on the canonical proliferative pathway. The growth factor bypass properties of eIF4E are due to its ability to translationally activate cyclin D1, an occurrence I report for the first time. I also demonstrate the potential of pharmacological intervention targeting hyperactive translational activity. With the use of small molecular compounds which antagonize translation initiation, I demonstrate the ability to reverse eIF4E triggered proliferation in the eIF4E inducible system and the selective elimination of cancer cells with minimal toxicity in normal cells. This study has lead to a better understanding of how cap-dependent translation regulates cell proliferation and advanced the novel concept for cancer biology and therapeutics focused on translational control.
机译:癌症目前是美国第二大死亡原因,约占每年死亡率的四分之一。尽管癌症在遗传上是多种多样的,但我们怀疑致癌信号会在细胞机制的共同组成部分汇聚,并且这些关键的调控点可能代表了新疗法的分子靶标。我的方法来自最近关于人类乳腺癌和肺癌的研究,以及淋巴恶性肿瘤的小鼠模型。他们确定了帽依赖性蛋白合成机制是Ras / PI3K / Akt级联产生的致癌信号收敛和放大的关键点。蛋白质合成中的限速步骤是由三聚体蛋白质真核起始因子4F(eIF4F)介导的起始。 eIF4F的限制性成分是mRNA帽结合蛋白,真核起始因子4E(eIF4E)。 eIF4E的过度表达会转化永生的啮齿动物成纤维细胞,并使原代人类细胞具有几种与癌症相关的功能,包括降低生长因子对增殖和存活,集落形成和锚定独立性的需求。然而,直到最近,所有检查eIF4E致癌潜能的实验都涉及稳定转染的细胞系中组成型过表达。确切地不确定哪些致癌功能可以直接归因于eIF4E,以及与它抑制凋亡的能力有关,从而为随后的致癌突变创造了宽松的环境。我开发了一个高保真eIF4E诱导系统,该系统可使我突然激活eIF4E的过度表达。有了这个系统,我就能在eIF4E诱导和自主细胞增殖之间建立直接联系。我还能够确定在eIF4E诱导后发生的细胞周期动力学,包括eIF4E绕过典型增生途径中生长因子起始的能力。 eIF4E的生长因子旁路特性归因于其翻译激活cyclin D1的能力,这是我首次报道这种情况。我还展示了针对过度活跃的翻译活动的药物干预的潜力。通过使用拮抗翻译起始的小分子化合物,我证明了在eIF4E诱导系统中逆转eIF4E触发的增殖能力以及选择性消除癌细胞的能力,而对正常细胞的毒性却最小。这项研究使人们对帽依赖性翻译如何调节细胞增殖有了更好的了解,并推动了针对癌症生物学和针对翻译控制的疗法的新概念的发展。

著录项

  • 作者

    Underwood, Jon Michael, II.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

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