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细胞粘附分子刺激轴突生长反应背后的信号转导机制。

Signal transduction mechanisms underlying axonal growth responses stimulated by cell adhesion molecules.

作者信息

Green P J, Walsh F S, Doherty P

机构信息

Department of Experimental Pathology, UMDS Guys Hospital, London.

出版信息

Rev Neurol (Paris). 1997 Sep;153(8-9):509-14.

PMID:9684000
Abstract

The mechanisms underlying nerve growth have been extensively studied, and it has been found that the three cell adhesion molecules (CAMs) L1, NCAM and N-cadherin play a key role in this process. All three CAMs are able to stimulate axonal growth from a variety of neuronal cells, and a range of agents which either mimic or inhibit CAM stimulated neurite outgrowth have been identified and has provided a basis for understanding the nature of the response. Results from these studies suggested that activation of a tyrosine kinase-phospholipase C gamma (PLC gamma) cascade was required for the CAM response. Following the identification of a CAM-homology domain (CHD) within the fibroblast growth factor receptor (FGFR) and a putative CHD-binding motif within each of the CAMs, it was suggested that this might be the tyrosine kinase implicated in the CAM pathway. This has been tested experimentally in a number of ways, including the use of transgenic mice expressing a dominant-negative FGFR, and several results have now demonstrated that a functional FGFR is required for CAM stimulated neurite outgrowth. More recently, treatment of neurons with the CAMs has been shown to stimulate FGFR autophosphorylation and PLC gamma activity which in turn leads to activation of a second messenger cascade involving diacylglycerol and arachidonic acid and results in calcium influx into the neurons. Pharmacological studies have confirmed that this cascade is responsible for the neurite outgrowth response.

摘要

神经生长的潜在机制已得到广泛研究,并且发现三种细胞黏附分子(CAMs),即L1、NCAM和N-钙黏蛋白在这一过程中起关键作用。所有这三种CAMs都能够刺激多种神经元细胞的轴突生长,并且已经鉴定出一系列模拟或抑制CAMs刺激的神经突生长的因子,这为理解该反应的本质提供了基础。这些研究结果表明,CAMs反应需要激活酪氨酸激酶-磷脂酶Cγ(PLCγ)级联反应。在成纤维细胞生长因子受体(FGFR)中鉴定出一个CAM同源结构域(CHD)以及在每种CAMs中鉴定出一个假定的CHD结合基序后,有人提出这可能是参与CAM途径的酪氨酸激酶。这已通过多种方式进行了实验验证,包括使用表达显性负性FGFR的转基因小鼠,现在一些结果表明,功能性FGFR是CAMs刺激神经突生长所必需的。最近,用CAMs处理神经元已被证明可刺激FGFR自身磷酸化和PLCγ活性,进而导致涉及二酰基甘油和花生四烯酸的第二信使级联反应的激活,并导致钙离子流入神经元。药理学研究证实,这一级联反应负责神经突生长反应。

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