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SIGNAL TRANSDUCTION AND MOUSE DEVELOPMENT

SIGNAL TRANSDUCTION AND MOUSE DEVELOPMENT
信号转导和小鼠发育
批准号:
6696741
负责人:
Philippe M Soriano
金额:
$42.31万
依托单位国家:
美国
项目类别:
财政年份:
1989
资助国家:
美国
项目状态:
已结题
起止时间:
1989-07-01 至 2005-12-31

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中文摘要
翻译
生长因子诱导多种细胞反应,包括增殖、存活和迁移。 许多生长因子激活具有内在酪氨酸激酶活性的受体。 在细胞培养系统中的广泛研究已经表明,受体接合导致细胞内效应物的结合,以及个体信号传导途径的激活。 然而,利用一种或另一种途径的生理相关性仍然是未知的。 在这个建议中,我们将集中在确定血小板衍生生长因子(PDGF),这是参与许多组织,包括血管系统,肾脏,骨骼和神经嵴衍生物的发育和生理反应下游的单个信号通路的作用。 我们将通过产生表达PDGF受体的突变小鼠来实现我们的目标,在这些小鼠中,各种效应物的个体对接位点已经发生突变。 我们将进一步集中我们的努力,以确定是否PDGF受体和其他生长因子受体之间的信号通路是多余的,使用基因替代方法。 为了进一步研究PDGF信号传导在发育中的作用,我们将利用条件性基因切除来测试PDGF信号传导在特定组织中的作用。 这些研究有助于我们了解生长因子的调控机制,并提供有关生长因子信号通路在生理过程中的特异性和相互作用的信息。
英文摘要
Growth factors induce a variety of cellular responses including proliferation, survival and migration. A number of growth factors activate receptors with intrinsic tyrosine kinase activity. Extensive studies in cell culture systems have shown that receptor engagement leads to binding of intracellular effectors, and the activation of individual signaling pathways. However, the physiological relevance of utilizing one or another pathway remains mostly unknown. In this proposal, we will focus on identifying the roles of individual signaling pathways downstream of platelet derived growth factors (PDGFs), which are involved in developmental and physiological responses in many tissues, including the vasculature, the kidney, the skeleton and neural crest derivatives. We will achieve our goals by generating mutant mice that express PDGF receptors in which the individual docking sites for various effectors have been mutated. We will further concentrate our efforts on determining if signaling pathways between PDGF receptors and other growth factor receptors are redundant, using genetic substitution methods. To further investigate the role of PDGF signaling in development, we will make use of conditional gene ablation to test the role of PDGF signaling in specific tissues. These studies should help us understand growth factor regulatory mechanisms, and provide information on the specificity and interplay of growth factor signaling pathways in physiological processes.
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