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鸡胚神经细胞间的黏附。IV. 细胞表面分子细胞黏附分子(CAM)在脊髓神经节培养物中神经突束形成中的作用。

Adhesion among neural cells of the chick embryo. IV. Role of the cell surface molecule CAM in the formation of neurite bundles in cultures of spinal ganglia.

作者信息

Rutishauser U, Gall W E, Edelman G M

出版信息

J Cell Biol. 1978 Nov;79(2 Pt 1):382-93. doi: 10.1083/jcb.79.2.382.

Abstract

The cell adhesion molecule (CAM) is involved in adhesion among embryonic retinal and brain cells and has been detected in a variety of neural tissues. This paper describes the use of spinal ganglion cultures and specific anti-CAM antibodies to determine the distribution of CAM on plasma membranes of nerve processes, and to assess the results of perturbation of its function during the growth of neurites from ganglia. The results indicate that CAM is distributed over the entire surface of nerve processes, and that specific anti-CAM Fab' fragments alter the morphology of neurite outgrowth. In particular, it was observed that anti-CAM inhibits formation of nerve bundles, so that the ganglion becomes surrounded by a tangled net of fine processes. Growth cone functions, such as neurite elongation, motility, and attachment to the substratum, did not appear to be affected by the antibody. These studies suggest that one of the major functions of CAM is to mediate side-to-side adhesion between neurites to form fascicles, and raise the possibility that this molecule serves a key role in embryogenesis of nerve tissues.

摘要

细胞黏附分子(CAM)参与胚胎视网膜和脑细胞之间的黏附,并已在多种神经组织中被检测到。本文描述了利用脊髓神经节培养物和特异性抗CAM抗体来确定CAM在神经突起质膜上的分布,并评估其功能在神经节神经突生长过程中受到干扰的结果。结果表明,CAM分布于神经突起的整个表面,特异性抗CAM Fab'片段会改变神经突生长的形态。特别值得注意的是,观察到抗CAM抑制神经束的形成,从而使神经节被一团缠结的细突起所包围。生长锥功能,如神经突伸长、运动性和与底物的附着,似乎不受该抗体的影响。这些研究表明,CAM的主要功能之一是介导神经突之间的侧向黏附以形成束状结构,并增加了该分子在神经组织胚胎发生中起关键作用的可能性。

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