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Cooperative effects of tumor suppressor genes and oncogenes on the dynamic process of tumorigenesis.

机译:抑癌基因和癌基因对肿瘤发生动态过程的协同作用。

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The overall hypothesis of this dissertation was that certain mutations or altered proteins would have a greater tumorigenic effect if acting cooperatively rather than independently. Three studies were conducted in support of this hypothesis.; The first study evaluated cooperative interactions between Brca2 and p53. The effects of mutation of these genes on cell proliferation and apoptosis were evaluated in the developing mouse mammary gland with and without exposure to irradiation. The hypothesis was that combined mutation of both genes would produce a more deleterious response than mutation of either gene alone. Results demonstrated that individual mutation of Brca2 or p53 could alter apoptosis and/or cell proliferation but had little effect on the growth index (apoptosis:proliferation ratio). Combined mutation of both genes did alter the growth index, but only in response to irradiation.; The second study evaluated spontaneous, ethylene oxide-, and benzene-induced mouse mammary tumors for p53 and H-ras mutations. The hypothesis was that both p53 and H-ras mutations would commonly occur together in the chemically induced tumors but not in spontaneous tumors. Results revealed that p53 and H-ras mutations were common events in both chemically induced and spontaneous mammary tumors. Overall, the results revealed that cooperative interaction between these genes is important in the genesis of mouse mammary tumors in general.; The third study evaluated the protein expression of four cell adhesion molecules (KAI1, CD9, E-cadherin, and N-cadherin) in ovarian epithelial carcinomas and metastases. The hypothesis was that more than one but not all of these adhesion molecules would be downregulated as tumors progressed towards a metastatic phenotype. Results revealed the remarkable complexity of adhesion molecule modulation during metastasis and suggested that cooperative interaction is an important event in the metastatic process.; In conclusion, this dissertation evaluated cooperative interactions between several different classes of cancer-related genes and proteins and provided support for the hypothesis that particular mutations or altered proteins would have a greater tumorigenic effect if acting cooperatively rather than independently.
机译:本文的总体假设是,某些突变或改变的蛋白质如果协同而不是独立发挥作用,将具有更大的致瘤作用。进行了三项研究以支持这一假设。第一项研究评估了Brca2和p53之间的协同相互作用。在有或没有暴露于辐射的发育中小鼠乳腺中评估了这些基因突变对细胞增殖和凋亡的影响。假设是两个基因的组合突变比单独一个基因的突变产生更有害的反应。结果表明,Brca2或p53的单个突变可以改变细胞凋亡和/或细胞增殖,但对生长指数(细胞凋亡:增殖比)的影响很小。两种基因的组合突变确实改变了生长指数,但仅在辐射的情况下才发生。第二项研究评估了自发,环氧乙烷和苯诱发的小鼠乳腺肿瘤中p53和H-ras突变。假设是p53和H-ras突变通常会在化学诱导的肿瘤中同时发生,而不是在自发性肿瘤中同时发生。结果表明,p53和H-ras突变在化学诱导和自发性乳腺肿瘤中都是常见事件。总体而言,结果表明,这些基因之间的协同相互作用通常在小鼠乳腺肿瘤的发生中很重要。第三项研究评估了四个细胞粘附分子(KAI1,CD9,E-cadherin和N-cadherin)在卵巢上皮癌和转移灶中的蛋白表达。假设是随着肿瘤进展为转移表型,这些粘附分子中的一种以上但不是全部都会下调。结果揭示了转移过程中粘附分子调节的显着复杂性,并表明合作相互作用是转移过程中的重要事件。总之,本论文评估了几种不同类别的癌症相关基因和蛋白质之间的协同相互作用,并为以下假设提供了支持:特定的突变或改变的蛋白质如果协同而不是独立发挥作用,将具有更大的致瘤作用。

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