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周围神经发育和再生过程中纤连蛋白及其受体α5β1表达的调控

Regulation of expression of fibronectin and its receptor, alpha 5 beta 1, during development and regeneration of peripheral nerve.

作者信息

Lefcort F, Venstrom K, McDonald J A, Reichardt L F

机构信息

Department of Physiology, University of California, San Francisco 94143-0724.

出版信息

Development. 1992 Nov;116(3):767-82. doi: 10.1242/dev.116.3.767.

Abstract

The extracellular matrix glycoprotein, fibronectin, is a potent promoter of peripheral neurite outgrowth. Interactions of peripheral neurons with fibronectin have been shown to be primarily mediated by the beta 1 class of integrin heterodimers. In the present study, we have examined the expression and regulation of fibronectin and its integrin receptor, alpha 5 beta 1, in developing and regenerating chick peripheral nerve. We show that fibronectin and alpha 5 beta 1 are expressed at comparatively high levels in developing nerve with alpha 5 beta 1 expression on axons and non-neuronal cells. With nerve maturation, both proteins are less prominently expressed and the cellular pattern of alpha 5 beta 1 expression becomes more restricted. Following lesion of mature nerve, both fibronectin and alpha 5 beta 1 are strongly induced with prominent expression of alpha 5 beta 1 on regenerating neurites and Schwann cells. The elevation in fibronectin levels in the regenerating nerve is highest in the vicinity of the lesion, an area undergoing extensive cellular remodeling including Schwann cell migration and growth cone extension. Our results suggest that fibronectin and its receptor, alpha 5 beta 1, may mediate functionally important interactions in the development and regeneration of peripheral nerve.

摘要

细胞外基质糖蛋白纤连蛋白是外周神经突生长的有力促进因子。外周神经元与纤连蛋白的相互作用已被证明主要由β1类整合素异二聚体介导。在本研究中,我们检测了纤连蛋白及其整合素受体α5β1在发育中和再生中的鸡外周神经中的表达及调控。我们发现,在发育中的神经中,纤连蛋白和α5β1以相对较高的水平表达,α5β1在轴突和非神经元细胞上表达。随着神经成熟,这两种蛋白的表达均不那么明显,且α5β1的细胞表达模式变得更加局限。成熟神经损伤后,纤连蛋白和α5β1均被强烈诱导,α5β1在再生神经突和雪旺细胞上显著表达。再生神经中纤连蛋白水平的升高在损伤部位附近最高,该区域正在经历包括雪旺细胞迁移和生长锥延伸在内的广泛细胞重塑。我们的结果表明,纤连蛋白及其受体α5β1可能在外周神经的发育和再生中介导功能上重要的相互作用。

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