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ROLE OF EPH RECEPTORS AND THEIR LIGANDS IN CELL PATTERNING

ROLE OF EPH RECEPTORS AND THEIR LIGANDS IN CELL PATTERNING
EPH 受体及其配体在细胞模式中的作用
批准号:
6613896
负责人:
RICHARD AXEL
金额:
$15.94万
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:
2002-08-01 至 2003-07-31

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中文摘要
翻译
受体酪氨酸激酶最初被鉴定为细胞同源物。 引发细胞转化的病毒致癌基因。受体酪氨酸 激酶在细胞信号转导中发挥着重要作用,并导致不同的 细胞过程,包括细胞增殖、分化和 生死存亡。受体酪氨酸激酶的一个新的大亚家族--Eph 家族,可能负责一系列独特的细胞属性, 包括细胞迁移、细胞黏附和轴突引导 关于他们在哪里以及他们的邻居是谁的信息。在这 Eph受体配基系统的改变可能有助于 肿瘤的细胞生长紊乱和细胞迁移特征 表型。我们正在研究一组特殊的嗅觉神经元, 经历细胞迁移、隔室的犁鼻感觉神经元 形成和轴突生长,形成复杂的地形图。 有趣的是,这些细胞驻留在距离隔间内 由它们所表达的Eph配体的性质所定义。高度的 这组神经元的特殊性质使我们能够操纵 这个系统用来从遗传学上检查Eph受体和它们的 在这些细胞中的配体不会对发育或 生物体的繁殖状态。实验旨在辨别 Eph受体信号转导的细胞和分子机制 这些信号会导致细胞图案化。这些遗传方法在这方面 专门的神经系统可能更普遍地适用于细胞 神经系统外的过程。
英文摘要
Receptor tyrosine kinases were originally identified as cellular homologs of viral oncogenes that elicit cellular transformation. Receptor tyrosine kinases play essential roles in cell signaling and lead to diverse cellular processes, including cell proliferation, differentiation, and survival. A large new subfamily of receptor tyrosine kinases, the Eph family, may be responsible for a unique array of cellular properties, including cell migration, cell adhesion, and axon guidance affording cell information as to where they are and who their neighbors are. In this manner, alterations in the Eph receptor ligand system may contribute to disarray in cell growth and cell migration characteristic of the tumor phenotype. We are studying a specialized set of olfactory neurons, the vomeronasal sensory neurons that undergo cell migration, compartment formation and axon outgrowth to form a complex topographic map. Interestingly, these cells reside within distance compartments that are defined by the nature of the Eph ligands that they express. The highly specialized nature of this set of neurons has permitted us to manipulate this system to genetically examine the role of the Eph receptors and their ligands in these cells without major effect upon the development or reproductive status of the organism. Experiments are designed to discern the cellular and molecular mechanisms of Eph receptor signaling, and how these signals result in cell patterning. These genetic approaches in this specialized neuronal system may be more generally applicable to cellular processes outside of the nervous system.
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