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Role of Retinoblastoma in Prostate Homeostasis

Role of Retinoblastoma in Prostate Homeostasis
视网膜母细胞瘤在前列腺稳态中的作用
批准号:
6908907
负责人:
MARK L DAY
金额:
$26.19万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-08-01 至 2007-06-30

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项目成果

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中文摘要
翻译
描述(由申请人提供):在过去的5年中,该实验室收集了大量证据,表明前列腺上皮细胞中的生长和凋亡信号在视网膜母细胞瘤基因(Rb)调节的共同点处会聚。由于Rb基因敲除的致命性,基因破坏实验,以确认这样的一个惯例Rb从来没有完成。我们的实验室与Simon海沃德和Gerald库尼亚合作,利用一种创新的方法在小鼠胚胎死亡之前从其胚胎中“拯救”Rb-/-前列腺前体雏形,以产生可行的Rb-/-前列腺组织。这项合作导致了一项研究,表明Rb-/-前列腺组织重组体对经尿道诱导的前列腺癌非常敏感(附录F)。该模型引起了人们的极大兴趣,因为它概括了人类前列腺癌的几个关键特征,即其从异型增生到癌的进行性。我的实验室目前正试图阐明Rb缺失使前列腺上皮细胞易于激素致癌的分子机制。为此,我们分离了Rb-/-前列腺上皮细胞系,称为PrERb-/-。使用这些细胞系,我们已经发现,Rb的特定损失的结果在永生化的前列腺上皮细胞和组织,这是不敏感的凋亡刺激可能是由于一个衰减的半胱天冬酶-9途径。我们已经确定了一个假定的Rb调节途径,其中c-myc和端粒酶可能促进Rb-/-表型的永生化。但最有趣的发现是雄激素受体(AR)的表达和DNA结合活性增加,这表明Rb和AR是协调控制前列腺上皮生长和存活的生理信号的相互作用成分。基于这些发现,我们假设Rb在其调节细胞周期、细胞存活和雄激素反应性的能力方面是调节前列腺上皮生长和存活的精确调节但知之甚少的机制的核心,这项研究将确定Rb缺失是否会降低PrERb-/-细胞生长停滞和衰老或凋亡的能力。前列腺移植物在体内和PrERb-/-细胞系。我们将确定线粒体/caspase-9途径在Rb-/-表型中是否减弱。我们将研究c-myc/端粒酶途径在培养细胞和体内对PrERb-/-永生化的贡献。最后,我们将确定Rb和E2 F1在AR转录调节中的作用,并确定PrERb-/-细胞和移植物是否表现出增强的雄激素敏感性和AR活性。
英文摘要
DESCRIPTION (provided by applicant): Over the last 5 years, this laboratory has compiled extensive evidence indicating that growth and apoptotic signals in prostate epithelial cells converge at a common point regulated by the retinohlastoma gene (Rb). Due to the lethal nature of the Rb knockout, gene disruption experiments to confirm such a rote for Rb have never been accomplished. Our laboratory, in collaboration with Simon Hayward and Gerald Cunha, has utilized an innovative approach to "rescue" Rb-/- prostate precursor rudiments from mouse embryos prior to their death to generate viable Rb-/- prostate tissue. This collaboration has resulted in a study demonstrating that Rb-/- prostate tissue recombinants were highly susceptible to hormonally induced prostate carcinogenesis (appendix F). This model has drawn much interest due the recapitulation of several key features of human prostate cancer, namely its progressive nature from dysplasia to carcinoma. My laboratory is currently trying to elucidate the molecular mechanism by which Rb loss predisposes prostate epithelium to hormonal carcinogenesis. To this end we have isolated Rb-/- prostate epithelial cell lines, termed PrERb-/-. Using these cell lines we have discovered that the specific loss of Rb results in immortalized prostate epithelium and tissue that is insensitive to apoptotic stimuli possibly due to an attenuated caspase-9 pathway. We have identified a putative Rb-regulated pathway in which c-myc and telomerase may promote immortalization of the Rb-/- phenotype. But the most interesting finding was the increased expression and DNA-binding activity of the androgen receptor (AR), suggesting that Rb and AR are interacting components coordinating physiologic signals that control the growth and survival of prostate epithelium. Based on these findings, we hypothesize that Rb, in its capacity to regulate cell cycle, cell survival and androgen responsiveness, is central to a precisely regulated but poorly understood mechanism that mediates the growth and survival of prostate epithelium, The proposed studies will determine if Rb deletion diminishes the cell's ability to growth arrest and senesce or undergo apoptosis in PrERb-/- prostate grafts in vivo and in the PrERb-/- cell line. We will determine if the mitochondrial/caspase-9 pathway is attenuated in the Rb-/- phenotype. We will examine the contribution of the c-myc/telomerase pathway to PrERb-/- immortalization in cultured cells and in vivo. Lastly, we will determine the role of Rb and E2F1 in the regulation of AR transcription and determine if PrERb-/- cells and grafts exhibit heightened androgen sensitivity and AR activity.
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