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CATENIN AND CADHERIN SIGNALING IN DEVELOPMENT AND CANCER

CATENIN AND CADHERIN SIGNALING IN DEVELOPMENT AND CANCER
发育和癌症中的连环蛋白和钙粘蛋白信号传导
批准号:
6772836
负责人:
BARRY M. GUMBINER
金额:
$52.35万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1987
资助国家:
美国
项目状态:
已结题
起止时间:
1987-01-01 至 2009-12-31

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中文摘要
翻译
超出所提供的空间。P-catenin是cadherin粘附蛋白复合物的一个组成部分,也是Wnt通路中的一种细胞内信号转导蛋白,P-catenin受ARC肿瘤抑制蛋白调控,P-catenin和E-cadherin的突变与多种形式的癌症有关。该项目的两个总体目标是确定胞质调节p-catenin信号传导的机制,以及确定钙粘蛋白如何影响p-catenin信号传导、细胞分化和肿瘤细胞生长。对连环蛋白的核输入对信号传导很重要,并通过一种涉及其与核孔相互作用的新机制发生。我们将研究p-catenin核孔对接的机制以及Wnt信号通路对其的调控。p-catenin信号通路是由一个非常大的蛋白复合物调控的,该蛋白复合物包括ARC、axin和激酶GSKSp。完整复合物的性质将通过体外对连环蛋白信号分析、磷酸化分析和对连环蛋白相互作用分析来研究。该复合体也将被纯化,以确定关键的蛋白质成分。此外,我们还将评估最近发现的第二种ARC蛋白APC-2在爪蟾胚胎早期p-catenin信号传导中的作用。Cadherin表达通过在质膜上结合p-catenin信号而拮抗p-catenin信号,为细胞粘附变化与基因表达调控提供了一种潜在的机制。我们将探讨cadherin调控p-catenin信号传导在爪蟾胚胎神经嵴发育(上皮-间质过渡)中发挥重要作用的可能性。同样,我们将通过实验来确定调节p -catenin信号传导或增强细胞粘附对E-cadherin肿瘤抑制功能的相对贡献。实验还将确定E-cadherin是否可以直接产生介导细胞生长接触抑制的信号。这些实验将有助于我们理解p-catenin介导的信号传导机制,并为细胞粘附、组织形态发生和肿瘤生长之间的关系提供见解。网站性能 ======================================== 节结束 ===========================================
英文摘要
EXCEED THE SPACE PROVIDED. P-catenin is a component of the cadherin adhesion protein complex and an intracellular signal transducing protein in the Wnt pathway, p-catenin is regulated by the ARC tumor suppressor protein, and mutations in both p-catenin and E-cadherin are implicated in many forms of cancer. The two overall objectives of the project are to determine the mechanism underlying the cytoplasmic regulation of p-catenin signaling, and to determine how cadherins affect p-catenin signaling, cell differentiation, and tumor cell growth. Nuclear import of p-catenin is important for signaling and occurs by a novel mechanism involving its interaction with the nuclear pore. The mechanism of p-catenin nuclear pore docking and its regulation by the Wnt signaling pathway will be studied, p-catenin signaling is regulated by a very large protein complex that includes ARC, axin, and the kinase GSKSp. The properties of the intact complex will be studied using an in vitro p-catenin signaling assay, phosphorylation assays, and analyses of p-catenin interactions. The complex will also be purified in order to identify key protein components. Furthermore, the role of a recently identified second ARC protein, APC-2, in p-catenin signaling in the early Xenopus embryo will be evaluated. Cadherin expression antagonizes p-catenin signaling by binding it up at the plasma membrane, providing a potential mechanism to couple changes in cell adhesion to regulation of gene expression. The possibility that cadherin regulation of p-catenin signaling plays an important role in development of the neural crest in the Xenopus embryo, an epithelial-mesenchymal transition, will be explored. Similarly, experiments will be done to determine the relative contributions of regulating P-cateninsignaling or enhancing cell adhesion to the tumor suppressor function of E-cadherin. Experiments will also be performed to determine whether E-cadherin can directly generate signals that mediate contact inhibition of cell growth. These experiments should help us understand the mechanisms of p-catenin-mediated signaling and provide insights into the relationships between cell adhesion, tissue morphogenesis, and tumor growth. PERFORMANCE SITE ========================================Section End===========================================
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