IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
批准号:
7014481
负责人:
Krzysztof Reiss
金额:
$26.16万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-03-06 至 2008-02-28
关键词:
Polyomavirus hominis 2binding sitesbiological signal transductioncell linechimeric proteinsdisease /disorder modelgenetically modified animalsgenomegrowth factor receptorsimmunocytochemistryimmunoprecipitationinsulinlike growth factorintracellular transportlaboratory mousemedulloblastomamolecular cloningneoplastic transformationpediatric neoplasm /cancerprotein localizationprotein protein interactionprotein transportsite directed mutagenesistissue /cell culturetumor antigens
中文摘要
髓母细胞瘤约占所有儿童颅内肿瘤的25%。这些高度恶性肿瘤起源于小脑,主要影响5至15岁的儿童。尽管髓母细胞瘤的病因尚不清楚,但一些报道表明,胰岛素样生长因子I (IGF-1)可能有助于这些肿瘤的发展。我们最近的研究表明,在一半以上的人髓母细胞瘤活检中存在磷酸化(活性)IGF-I受体(IGF-IR)。主要的IGF-IR信号分子胰岛素受体底物1 (IRS-1)在这些肿瘤中强烈过表达,IRS-1向细胞核的易位仅在JCV T抗原阳性的髓母细胞瘤细胞系和JCV T抗原阳性的人髓母细胞瘤活检中被观察到。利用JC病毒(JCV)早期基因组的转基因动物模型为IRS-1在成神经管细胞瘤中的实际研究提供了实验系统。这些小鼠发展自发小脑肿瘤,组织学上与人类髓母细胞瘤非常相似。该病毒的早期基因组编码调控蛋白,即JCV t抗原,在细胞培养中具有转化特性,在实验动物中具有致瘤性。有趣的是,最近的研究揭示了JCV基因组与人类自发成神经管细胞瘤的关联,以及JCV t抗原在一些但不是所有人类肿瘤细胞中的表达。这与转基因小鼠模型的观察结果相似,在转基因小鼠模型中,并非所有含有JCV早期基因组的髓母细胞瘤细胞都表达t抗原。尽管JCV t抗原与人髓母细胞瘤之间的因果关系仍有待确定,但JCV t抗原阳性和阴性髓母细胞瘤细胞系的可用性提供了一个独特的实验系统,可以在不同的t抗原背景下研究ir -1核易位的作用。为了验证IRS- 1核易位参与成神经管细胞瘤恶性生长的假说,我们提出了三个具体的目的。在第一个目标中,将应用IRS-1和JCV t抗原的突变分析来确定这两个分子之间物理相互作用的结合域。在第二个目标中,通过靶向IRS-1和JCV T-抗原结合位点,我们将开发能够干扰IRS-1- JCV T-抗原结合的新的显性阴性突变体。这些新的突变体将在JCV t抗原阳性和阴性的髓母细胞瘤细胞系中进行测试,以确定IRS-1 - JCV t抗原相互作用是否有助于髓母细胞瘤的转化表型。最后,在第三个目标中,我们将描述JCV T-抗原介导的IRS-1转定位到细胞核的生物学意义,并确定在实验动物中靶向破坏IRS-1 - JCV T-抗原相互作用是否会减轻原始神经外胚层肿瘤/髓母细胞瘤的发生和/或进展。
英文摘要
Medulloblastomas represent about 25 percent of all pediatric intracranial neoplasms. These highly malignant tumors arise from the cerebellum and affect mainly children between ages five and fifteen. Although the etiology of medulloblastoma remains unknown, several reports suggest that insulin-like growth factor I (IGF-1) may contribute to the development of these tumors. Our recent studies revealed the presence of the phosphorylated (active) IGF-I receptor (IGF-IR) in more than half of human medulloblastoma biopsies examined. The major IGF-IR signaling molecule, insulin receptor substrate 1 (IRS-1) is strongly overexpressed in these tumors, and the IRS-1 translocation to the nucleus has been observed exclusively in JCV T-antigen positive medulloblastoma cell lines, and in JCV T- antigen positive human medulloblastoma biopsies. A transgenic animal model utilizing the JC virus (JCV) early genome provides an experimental system, in which the IRS-1 could be actually studied in medulloblastomas. These mice develop spontaneous cerebellar tumors that histologically are close parallels to human medulloblastomas. The early genome of this virus encodes regulatory protein, JCV T-antigen, that has transforming properties in cell culture, and is tumorogenic in experimental animals. Interestingly, recent studies revealed association of JCV genome with spontaneous medulloblastomas in humans, and the expression of JCV T-antigen in some but not all human tumor cells. This is comparable with the observation in transgenic mouse model where not all medulloblastoma cells containing JCV early genome, express T-antigen. Although a cause and effect relationship between JCV T-antigen and human medulloblastoma remains to be established, the availability of JCV T-antigen positive and negative medulloblastoma cell lines provides an unique experimental system, in which the role of IRS-1 nuclear translocation could be studied in a different T-antigen context. Three specific aims are proposed to test the hypothesis that IRS- 1 nuclear translocation contributes to the malignant growth in medulloblastoma. In the first aim, mutational analysis of the IRS-1 and JCV T-antigen will be applied to determine binding domains involved in the physical interaction between these two molecules. In the second aim, by targeting IRS-1 and JCV T- antigen binding sites we will develop new dominant negative mutants capable of interfering with the IRS-1- JCV T-antigen binding. These new mutants will be tested in both JCV T-antigen positive and negative medulloblastoma cell lines to determine whether the IRS-1 - JCV T-antigen interaction contributes to the transformed phenotype in medulloblastomas. Finally in the third aim, we will characterize biological significance of the JCV T- antigen -mediated translocalization of IRS-1 into the nucleus, and determine whether targeted disruption of the IRS-1 - JCV T- antigen interaction attenuates the development and/or progression of primitive neuroectodermal tumors/medulloblastomas in experimental animals.
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IGF SIGNAL TRANSDUCTION PATHWAY IN MEDULLOBLASTOMA
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批准号:6825073
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资助金额:$25.98万
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IGF induced neuronal protection and HIV-1 infection
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IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
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批准号:6464827
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资助金额:$26.79万
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Nuclear IRS-1-DNA repair and mutagenesis in medulloblastoma
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批准号:7522181
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资助金额:$27.5万
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Nuclear IRS-1-DNA repair and mutagenesis in medulloblastoma
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批准号:8256598
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资助金额:$25.25万
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IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
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批准号:6708891
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资助金额:$26.79万
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依托单位:
IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
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批准号:6868867
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资助金额:$26.79万
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财政年份:2002
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Nuclear IRS-1-DNA repair and mutagenesis in medulloblastoma
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资助金额:$26.03万
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Nuclear IRS-1-DNA repair and mutagenesis in medulloblastoma
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批准号:8116528
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资助金额:$25.25万
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IRS-1 - JC T-antigen Interaction in Cerebellar Tumors
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批准号:6623329
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资助金额:$26.79万
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IGF SIGNAL TRANSDUCTION PATHWAY IN MEDULLOBLASTOMA
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资助金额:$25.58万
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财政年份:--
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资助金额:$25.61万
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IGF-1 signaling pathway in HIV-1 in CNS disease
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资助金额:$31.53万
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依托单位:
IGF-1 signaling pathway in HIV-1 in CNS disease
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资助金额:$29.66万
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IGF-1 signaling pathway in HIV-1 in CNS disease
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资助金额:$29.66万
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财政年份:--
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依托单位:
海外基金