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The role ofv-Ha-ras transgene in tumor development in the Tg.AC transgenic mouse.

机译:Tg.AC转基因小鼠中v-Ha-ras转基因在肿瘤发展中的作用。

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摘要

Protecting the public against potential cancer causing agents and discovering therapeutic interventions for existing cancers has been a major focus of scientific research. Advances in the development of transgenic animal models offer scientists improved methods to screen chemicals for carcinogenic and anticarcinogenic activity. The Tg.AC transgenic mouse, harboring an activated viral Harvey ras (v-Ha-ras) oncogene is being proposed as an alternative screening method to the conventional, labor-intensive and costly 2-year rodent cancer bioassay. Uncertainties surrounding the mechanism of the model and a lack of a clear understanding regarding the role of the transgene in tumorigenesis have, however, raised questions regarding it's reliability to detect a wide range of chemical carcinogens that can act via a variety of mechanisms and routes of exposure. The aim of the current investigations was to examine the role of the v-Ha-ras transgene in tumor development and it's impact on the utility of the Tg.AC mouse model as a carcinogen-screening tool. We ascertain that the role of the transgene in the Tg.AC mouse is unique to the skin and that two distinct mechanisms exist for regulation of the transgene. The first is constitutive regulation occurring in tissues expressing nuclear transcription factors (e.g. GATA-3) required for zeta-globin driven expression of the transgene. We hypothesize that constitutive expression of the transgene does not confer oncogenic potential. The second is an inducible mechanism of transgene expression unique to the skin and this is a function of tissue specific nuclear transcription factors expressed in response to chemical carcinogen treatment. We hypothesize that these transcription factors interact with a novel TPA response element (TRE)-like binding site contained within the palindromic region of the zeta-globin promoter and this inducible transgene activation confers oncogenic potential. Although the role of the transgene in tumor development appears to be unique to the skin, the utility of the model as a carcinogenic screen and as a tool for mechanistic investigations of chemical carcinogens and anticarcinogens has been established through these investigations. A high correlation between known chemical activity (carcinogenic, anticarcinogenic, noncarcinogenic) and that predicted by the Tg.AC model was apparent as was the model's ability to provide some information regarding the mode of action for each chemical used in the evaluation. An unexpected difference in phenotypic tumor response was observed for genotoxic (benzo[a]pyrene) versus non-genotoxic (TPA-tetradecanoyl phorbol acetate) chemicals indicating further utility of this transgenic model to discriminate these two classes of carcinogens. The current investigations extend the characterization of this transgenic animal in the areas of transgene regulation and the utility of the model as a carcingen-screening tool. Overall this work sheds light on current mechanistic uncertainties surrounding the model and further support its utility as a short-term carcinogenicity screen and research tool.
机译:保护公众免受潜在的致癌因素的影响并发现现有癌症的治疗手段一直是科学研究的重点。转基因动物模型开发的进展为科学家提供了改进的方法,以筛选具有致癌和抗癌活性的化学物质。 Tg.AC转基因小鼠,具有活化的病毒Harvey ras(v-Ha-ras)癌基因,正在被提议作为常规,劳动密集型和昂贵的2年啮齿动物生物测定的替代筛选方法。围绕模型机制的不确定性以及对转基因在肿瘤发生中的作用缺乏清晰的认识,引发了关于检测可通过多种机制和途径起作用的多种化学致癌物的可靠性的质疑。接触。当前研究的目的是检查v-Ha-ras转基因在肿瘤发展中的作用及其对Tg.AC小鼠模型作为致癌物筛选工具的实用性的影响。我们确定,Tg.AC小鼠中转基因的作用是皮肤所独有的,并且存在两种不同的机制来调节转基因。首先是组成型调节,其发生在表达ζ-珠蛋白驱动的转基因表达所必需的核转录因子(例如GATA-3)的组织中。我们假设转基因的组成型表达不赋予致癌潜力。第二个是皮肤特有的转基因表达的诱导机制,这是响应化学致癌物处理而表达的组织特异性核转录因子的功能。我们假设这些转录因子与zeta珠蛋白启动子回文区内包含的新型TPA反应元件(TRE)样结合位点相互作用,并且这种可诱导的转基因激活赋予了致癌潜力。尽管转基因在肿瘤发展中的作用似乎是皮肤所独有的,但通过这些研究,已经确立了该模型作为致癌物筛选以及化学致癌物和抗癌物机理研究的工具的实用性。 Tg.AC模型预测的已知化学活性(致癌,抗癌,非致癌)与已知化学活性之间存在高度相关性,因为该模型能够提供有关评估中所用每种化学物质的作用方式的某些信息。对于遗传毒性(苯并[a] py)与非遗传毒性(TPA-十四烷酰佛波乙酸乙酸酯)化学品,在表型肿瘤反应中观察到了意料不到的差异,表明该转基因模型可进一步用于区分这两类致癌物。当前的研究在转基因调节领域以及该模型作为carcingen-筛选工具的实用性方面扩展了该转基因动物的特性。总体而言,这项工作揭示了模型周围的当前机械不确定性,并进一步支持了其作为短期致癌性筛查和研究工具的效用。

著录项

  • 作者

    Spencer, Pamela Jean.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Biology Molecular.; Health Sciences Toxicology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;毒物学(毒理学);
  • 关键词

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