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Retinoid Tumor Differentiation Mechanisms

Retinoid Tumor Differentiation Mechanisms
类维生素A肿瘤分化机制
批准号:
7060874
负责人:
MICHAEL J SPINELLA
金额:
$25.61万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2009-05-31

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中文摘要
翻译
描述(由申请人提供):有快速发展的证据表明类维生素a在预防或治疗临床肿瘤中的有益作用。类维甲酸是通过激活类维甲酸受体而建立的基因转录调节因子。类视黄醛受体的关键靶点尚不清楚。我们发现了一种具有潜在重要生物学意义的新途径,预计它可以在受体水平上调节类视黄酮信号传导,并在类视黄酮和其他核受体家族成员之间提供串扰。我们之前的微阵列研究发现核受体共抑制因子受体相互作用蛋白140 (RIP140)是全反式维甲酸(RA)的一个新的直接靶点。RIP140似乎属于一类新的核受体共调节因子,因为它能够抑制各种激动剂结合的激素受体的功能。
英文摘要
DESCRIPTION (provided by applicant): There is rapidly evolving evidence for beneficial retinoid actions in preventing or treating clinical tumors. Retinoids are established regulators of gene transcription via activation of retinoid receptors. The key targets of retinoid receptors are unknown. We have discovered a novel pathway of potential major biologic significance that is predicted to regulate retinoid signaling at the level of the receptor and also to provide cross-talk between retinoids and other nuclear receptor family members. Our previous microarray studies discovered that the nuclear receptor co-repressor, receptor interacting protein 140 (RIP140) is a novel direct target of all-trans retinoic acid (RA). RIP140 appears to belong to a novel class of nuclear receptor coregulators since it is able to suppress the function of various agonist-bound hormone receptors. We propose that the activation of RIP140 may be a general mechanism that regulates RA-mediated G1 arrest in diverse cell contexts through a mechanism of repressional cross-talk among nuclear receptor family members. Based on novel preliminary findings we have designed three specific aims that will establish whether RIP140 plays a critical role in two clinically important areas of retinoid cancer biology. During RA-induced terminal differentiation of human embyronal carcinoma, we will ask whether RA regulation of RIP140 constitutes a programmed negative feedback mechanism which limits the activation of retinoid receptors. In the second system, we will ask whether RIP140 mediates cross-talk between retinoid and estrogen signaling in human breast cancer. The novel hypothesis to be tested is that one mechanism by which retinoids regulate gene expression and biologic phenotype is by transrepression through direct activation of the retinoid target gene RIP140. The three specific aims are designed to probe the mechanistic consequence of RA induction of RIP140 and to establish whether RIP140 plays a central role in regulating retinoid-induced tumor cell differentiation and G1 arrest. We believe RIP140 is an excellent entry point to gain mechanistic insights on the role of coregulator dynamics in hormonal signaling across a broad range of hormones, tumors and tissues.
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