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橄榄小脑投射的发育

Development of the olivocerebellar projection.

作者信息

Sotelo C, Chédotal A

机构信息

Inserm U. 106 Hôpital de la Salpêtrièrè, Paris, France.

出版信息

Perspect Dev Neurobiol. 1997;5(1):57-67.

PMID:9509518
Abstract

The establishment of orderly axonal projections is one of the essential steps in the formation of central networks. In this review, we discuss several of the current hypotheses on the mechanisms and molecules which govern this developmental process, using the olivocerebellar system as a model. During the formation of the olivocerebellar projection, there is a simultaneous and independent process of parcellation of the inferior olive and of the cerebellum. During embryogenesis, Purkinje cells in the cerebellar cortex and inferior olivary neurons are subdivided into small subsets of biochemically distinct compartments. We propose that this parcellation is involved in matching groups of olivary neurons to their corresponding subsets of target Purkinje cells. In vitro, the rotation of the anteroposterior axis of the cerebellum is followed by an equivalent inversion of the olivocerebellar projection. Olivary axons still project to the same Purkinje cells, suggesting that the formation of the olivocerebellar projection is regulated by positional information shared between pre- and postsynaptic neurons. We suggest that, in the chick embryo, the cell adhesion molecule BEN/SC1/DM-GRASP could be one of the target recognition molecules controlling the development of the olivocerebellar projection. These results also emphasize that coarse grained projection maps can form through chemoaffinity mechanisms, independent of the activity of the interacting neurons.

摘要

有序轴突投射的建立是中枢神经网络形成过程中的关键步骤之一。在本综述中,我们以橄榄小脑系统为模型,讨论了目前关于调控这一发育过程的机制和分子的几种假说。在橄榄小脑投射形成过程中,下橄榄核和小脑同时发生独立的分区过程。在胚胎发育过程中,小脑皮质中的浦肯野细胞和下橄榄核神经元被细分为生化特性不同的小亚群。我们认为这种分区参与了将橄榄核神经元群与其相应的目标浦肯野细胞亚群进行匹配。在体外,小脑前后轴的旋转会伴随着橄榄小脑投射的等效反转。橄榄核轴突仍投射到相同的浦肯野细胞,这表明橄榄小脑投射的形成受突触前和突触后神经元共享的位置信息调控。我们认为,在鸡胚中,细胞黏附分子BEN/SC1/DM-GRASP可能是控制橄榄小脑投射发育的目标识别分子之一。这些结果还强调,粗粒度投射图谱可通过化学亲和机制形成,而与相互作用神经元的活动无关。

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