MOUSE CANCER MODELS BY REGULATED INACTIVATION OF TUMOR S
MOUSE CANCER MODELS BY REGULATED INACTIVATION OF TUMOR S
批准号:
6514282
负责人:
EVA Y LEE
金额:
$70.3万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-09-30 至 2004-03-31
关键词:
animal genetic material tag brca gene breast neoplasms carcinogenesis cooperative study disease /disorder model female gene expression gene targeting genetic models genetically modified animals laboratory mouse male model design /development neoplasm /cancer genetics neoplastic process p53 gene /protein prostate neoplasms recombinase tumor suppressor genes
中文摘要
过去二十年的研究为人类癌症提供了重要的新见解。 视网膜母细胞瘤基因(RB)和p53的突变涉及约70%的人类癌症。这些基因,以及其他两个肿瘤抑制基因,BRCA 1和BRCA 2,在易患乳腺癌的家庭中发生突变,似乎也与前列腺癌有关。 我们有兴趣开发小鼠乳腺和前列腺肿瘤发生模型,其病因和发病机制与人类相似。 由于胚胎致死性和年轻小鼠中常见的致死性肿瘤类型的发展,先前具有上述四种基因的模型在癌症研究中的使用受到限制。 为了规避这些限制,我们在本申请中表明,时间,空间和细胞类型特异性的肿瘤抑制基因的失活可以在小鼠中使用一种新的方法,该方法将表达的Cre-loxP重组酶的四环素基因控制的二元系统的调节下实现。 这种方法已被应用于通过Rb、p53、Brca 1和Brca 2的条件性失活来产生小鼠癌症模型。 这些小鼠将用于:(A)测试给定肿瘤抑制物单独或组合在肿瘤形成中的特异性,并通过病理学和分子分析验证其肿瘤与人类癌症的相似性。(B)评估磁共振图像分析对癌症早期检测的敏感性。(C)研究环境因素,如低剂量辐射在肿瘤形成中的作用。(D)测试激素治疗或热量限制在预防肿瘤形成。(E)评估抗癌药物和使用肿瘤抑制基因的靶向治疗在小鼠乳腺癌和前列腺癌治疗中的功效。为了实现这一目标,提出了以下四个总体具体目标:(1)产生具有肿瘤抑制基因的小鼠,包括p53、Rb、Brca 1和Brca 2,其关键外显子具有整合的侧翼loxP(floxed)位点。(2)目的建立四环素基因调控系统调控Cre-重组酶表达,实现时间、空间和细胞类型特异性DNA切除的转基因小鼠。(3)在目的1和2中杂交小鼠以产生所需的转基因/floxed小鼠。(4)在肿瘤抑制基因(单独或组合)失活的各种环境下,表征这些小鼠中乳腺和前列腺肿瘤的形成和进展。与该联盟的其他成员合作,可以研究这些肿瘤抑制基因在其他类型癌症中的参与。 此外,具有调节的Cre重组酶的转基因小鼠,无论是普遍表达的还是细胞类型特异性表达的,都将可供该财团中的其他研究人员与他们的floxed小鼠杂交,以大大扩展位点特异性敲除的库。 这些有价值的小鼠模型将对癌症研究人员的一般社区非常有用。
英文摘要
Studies in the last two decades have provided a significant new insights into human cancer. Mutations of the retinoblastoma gene (RB) and p53 are involved in about 70 percent of human cancer. These genes, as well as two other tumor suppressor genes, BRCA1 and BRCA2, that are mutated in families predisposed to breast cancer, appear to be also implicated in prostate cancer. We are interested to develop mouse mammary and prostate models of tumorigenesis with an etiology and pathogenesis similar to humans. Due to embryonic lethality and the development of a prevalent type of lethal tumor in young mice, previous models with the above four genes were restricted in their use for cancer research. To circumvent these limitations, we show in this application that the temporal, spatial, and cell-type-specific inactivation of tumor suppressor genes can be achieved in mice using a novel method that places expression of the Cre-loxP recombinase under the regulation of the tetracycline binary system of gene control. This approach has been applied to generate mouse cancer models by conditional inactivation of Rb, p53, Brca1, and Brca2. These mice will be used to: (A) test the specificity of a given tumor suppressor singly or in combination in tumor formation, and to validate the similarity of their tumors to human cancer by pathological and molecular analyses. (B) evaluate the sensitivity of magnetic resonance image analysis for early detection of cancer. (C) investigate environmental factors, such as low dose radiation in tumor formation. (D) test hormone treatments or caloric restriction in preventing tumor formation. (E) evaluate the efficacy of anti-cancer drugs and targeted therapy using tumor suppressor genes in the treatment of breast and prostate cancer in mice. To achieve this goal, four overall specific aims are proposed as follows: (1) To generate mice with tumor suppressor genes, including p53, Rb, Brca1 and Brca2, whose critical exon(s) have integrated flanking loxP (floxed) sites. (2) To establish transgenic mice that demonstrate temporal, spatial and cell-type- specific DNA excision by regulating the expression of the Cre- recombinase with the tetracycline binary system for gene control. (3) To cross mice in Aims 1 and 2 to produce the desired transgenic/floxed mice. (4) To characterize breast and prostate tumor formation and progression in these mice under a variety of settings where tumor suppressor genes, either singly or in combination, are inactivated. In collaboration with other members of the consortium, the involvement of these tumor suppressor genes in other types of cancer could be investigated. In addition, the transgenic mice with regulated Cre-recombinase, either ubiquitously or cell-type- specifically expressed, would be available to other investigators in the consortium to cross with their floxed mice to greatly expand the repertoire of site-specific knock-outs. These valuable mouse models will be extremely useful for the general community of cancer researchers.
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会议论文
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批准号:8193128
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项目类别:
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资助金额:$31.44万
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财政年份:1998
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海外基金