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Cancer gene discovery and immunosurveillance studies using Sleeping Beauty mouse models.

机译:使用Sleeping Beauty小鼠模型的癌症基因发现和免疫监视研究。

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摘要

Cancer is the second leading cause of death in the United States. The majority of cases are caused by sporadic somatic mutation, which leads to cellular transformation over time. Therefore, cancer gene identification is a major focus of current research efforts. Understanding how key driver mutations result in cancer could lead to the design of better targeted therapies.;The Sleeping Beauty (SB) transposon system can be used to identify driver mutations in a variety of tumor types. SB mutagenesis mimics the sporadic accumulation of somatic mutations found in spontaneous human cancers. This system also has an additional benefit over chemical carcinogenesis models in that key cancer gene candidates are easily identified with high-throughput sequencing and subsequent bioinformatic analysis. Using SB, our lab recently identified a novel oncogene involved in non-melanoma skin cancer called Zmiz1, the biological function of which is not well studied.;A major focus of my thesis work was to characterize Zmiz1 and its role in skin cancer. This gene encodes a protein with predicted E3 SUMO ligase activity. My work has provided the first evidence firmly establishing an oncogenic role for Zmiz1 in cutaneous malignancy, thereby generating a novel transgenic mouse model of skin carcinogenesis. Importantly, we observed tumor-specific overexpression of an endogenous ZMIZ1 isoform in human squamous cell carcinomas.;Non-melanoma skin cancer is the most common malignancy worldwide, and it disproportionally affects immunosuppressed patients. One proposed explanation for this is the concept of tumor immunosurveillance, whereby the immune system suppresses tumor growth. When the immune system is compromised, transformed cells can develop into tumors. However, immunocompetent people also develop cancer, despite an intact immune system. It is thought that while the immune system is keeping transformed cells from forming a tumor, it simultaneously influences the acquisition of new mutations that eventually allow escape from immune detection and clearance. This process, called immunoediting, is widely believed to be dependent upon the adaptive immune system and another focus of my research was studying immunoediting mechanisms using SB mutagenesis.;Subtle differences were observed in the SB-induced mutation spectra of tumors generated in immunocompetent mice and immunocompromised mice, suggesting that some level of lymphocyte-dependent immunoediting of tumors had occurred. However, the adaptive immune system was not effective in suppressing tumor formation, which is in contrast with previously published data. My work represents an independent and original assessment of the immunoediting process, and cautions against reliance on a single animal model to study this area of cancer biology.
机译:癌症是美国第二大死亡原因。大多数情况是由偶发的体细胞突变引起的,随时间的推移会导致细胞转化。因此,癌症基因鉴定是当前研究工作的主要焦点。了解关键的驱动子突变如何导致癌症可以导致设计出更好的靶向治疗方法。睡美人(SB)转座子系统可以用于识别多种肿瘤类型中的驱动子突变。 SB诱变模仿在自发性人类癌症中发现的体细胞突变的零星积累。与化学致癌模型相比,该系统还具有其他优势,因为可以通过高通量测序和随后的生物信息学分析轻松识别关键的癌症基因候选者。我们的实验室最近使用SB鉴定了一种涉及非黑色素瘤皮肤癌的新型致癌基因,称为Zmiz1,其生物学功能尚未得到很好的研究。我论文的主要工作是表征Zmiz1及其在皮肤癌中的作用。该基因编码具有预测的E3 SUMO连接酶活性的蛋白质。我的工作提供了第一个证据,牢固确立了Zmiz1在皮肤恶性肿瘤中的致癌作用,从而产生了皮肤致癌作用的新型转基因小鼠模型。重要的是,我们观察到人类鳞状细胞癌中内源性ZMIZ1亚型的肿瘤特异性过度表达。非黑色素瘤皮肤癌是全世界最常见的恶性肿瘤,它不成比例地影响免疫抑制的患者。一种对此提出的解释是肿瘤免疫监视的概念,其中免疫系统抑制了肿瘤的生长。当免疫系统受损时,转化细胞会发展成肿瘤。然而,尽管免疫系统完整,但具有免疫能力的人也会患上癌症。人们认为,在免疫系统阻止转化细胞形成肿瘤的同时,它同时影响新突变的获得,这些突变最终使人们无法逃避免疫检测和清除。人们普遍认为此过程称为免疫编辑,这取决于适应性免疫系统,我的研究的另一个重点是使用SB诱变研究免疫编辑机制。;在SB诱导的具有免疫功能的小鼠体内产生的肿瘤突变谱中观察到细微差异。免疫功能低下的小鼠,提示已经发生了一定程度的淋巴细胞依赖的肿瘤免疫编辑。然而,与先前公开的数据相反,适应性免疫系统不能有效地抑制肿瘤形成。我的工作代表了对免疫编辑过程的独立且原始的评估,并告诫不要依赖单个动物模型来研究癌症生物学领域。

著录项

  • 作者

    Rogers, Laura Marie.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Biology Molecular.;Biology Genetics.;Biology Cell.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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