Tessier-Lavigne M, Placzek M, Lumsden A G, Dodd J, Jessell T M
Center for Neurobiology and Behavior, Columbia University, New York 10032.
Nature. 1988;336(6201):775-8. doi: 10.1038/336775a0.
In the developing nervous system, axons project considerable distances along stereotyped pathways to reach their targets. Axon guidance depends partly on the recognition of cell-surface and extracellular matrix cues derived from cells along the pathways. It has also been proposed that neuronal growth cones are guided by gradients of chemoattractant molecules emanating from their intermediate or final cellular targets. Although there is evidence that the axons of some peripheral neurons in vertebrates are guided by chemotropism and the directed growth of some central axons to their targets is consistent with such a mechanism, it remains to be determined whether chemotropism operates in the central nervous system. During development of the spinal cord, commissural axons are deflected towards a specialized set of midline neural epithelial cells, termed the floor plate, which could reflect guidance by substrate cues or by diffusible chemoattractant molecules. Here we provide evidence in support of chemotropic guidance by demonstrating that the rat floor-plate cells secrete a diffusible factor(s) that influences the pattern and orientation of commissural axon growth in vitro without affecting other embryonic spinal cord axons. These findings support the hypothesis that chemotropic mechanisms guide developing axons to their intermediate targets in the vertebrate CNS.
在发育中的神经系统中,轴突沿着特定的路径投射相当长的距离以到达其靶标。轴突导向部分依赖于对沿路径的细胞衍生的细胞表面和细胞外基质线索的识别。也有人提出,神经元生长锥由来自其中间或最终细胞靶标的趋化因子分子梯度引导。尽管有证据表明脊椎动物中一些外周神经元的轴突由化学趋向性引导,并且一些中枢轴突向其靶标的定向生长与这种机制一致,但化学趋向性是否在中枢神经系统中起作用仍有待确定。在脊髓发育过程中,连合轴突偏向一组特殊的中线神经上皮细胞,称为底板,这可能反映了底物线索或可扩散趋化因子分子的导向作用。在这里,我们通过证明大鼠底板细胞分泌一种可扩散因子,该因子在体外影响连合轴突生长的模式和方向而不影响其他胚胎脊髓轴突,从而提供了支持化学趋向性导向的证据。这些发现支持了化学趋向性机制引导发育中的轴突到达脊椎动物中枢神经系统中其中间靶标的假说。