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大鼠小脑攀缘纤维 - 浦肯野细胞突触发生的超微结构分析

Ultrastructural analysis of climbing fiber-Purkinje cell synaptogenesis in the rat cerebellum.

作者信息

Morara S, van der Want J J, de Weerd H, Provini L, Rosina A

机构信息

Istituto di Neuroscienze e Bioimmagini, CNR, Milan, Italy.

出版信息

Neuroscience. 2001;108(4):655-71. doi: 10.1016/s0306-4522(01)00433-x.

Abstract

Previous reports have described the transient expression of the neuropeptides calcitonin gene-related peptide and neuropeptide Y in selected subsets of rat olivocerebellar compartments during embryonic and postnatal development. Using these neuropeptides as endogenous markers for olivocerebellar fibers, the aim of this electron microscopic analysis was to reveal the synaptogenetic processes occurring between climbing fibers and their target Purkinje cells, from embryonic day 19 to postnatal day 16, the period during which Purkinje cells undergo intense emission and retraction of dendrites, and climbing fibers translocate their synapses along Purkinje cell membrane surfaces. The present findings provide the first direct evidence that climbing fiber synaptogenesis starts on embryonic day 19 and that these first synapses mainly involve the Purkinje cell embryonic dendrite rather than the Purkinje cell soma. At the same age, the presence of unlabeled synapses resembling calcitonin gene-related peptide-labeled synapses in the Purkinje cell plate makes it possible to conclude that climbing fibers form a major synaptic investment on embryonic Purkinje cells, a finding that strongly supports the hypothesis of an early differentiating role of climbing fibers on cerebellar development. Furthermore, during the period of intense dendritic remodeling of Purkinje cells, 'myelin figures' were often detected in Purkinje cell dendrites suggesting that they may at least in part represent real ultrastructural markers of membrane turnover that identifies the sites where Purkinje cell dendritic rearrangement is taking place. Finally the finding that the climbing fiber terminals apposed to degenerating dendrites did not generally show signs of degeneration leads us to suggests that climbing fiber translocation from a perisomatic to a dendritic location may be driven by the Purkinje cell dendritic remodeling.

摘要

先前的报告描述了在胚胎期和出生后发育过程中,神经肽降钙素基因相关肽和神经肽Y在大鼠橄榄小脑分区的特定亚群中的瞬时表达。以这些神经肽作为橄榄小脑纤维的内源性标记,本电子显微镜分析的目的是揭示从胚胎第19天到出生后第16天,攀缘纤维与其靶浦肯野细胞之间发生的突触形成过程,在此期间,浦肯野细胞经历树突的强烈发出和回缩,并且攀缘纤维沿着浦肯野细胞膜表面移动其突触。目前的研究结果提供了第一个直接证据,即攀缘纤维突触形成始于胚胎第19天,并且这些最初的突触主要涉及浦肯野细胞胚胎树突而非浦肯野细胞胞体。在同一年龄,浦肯野细胞层中存在类似于降钙素基因相关肽标记突触的未标记突触,这使得可以得出结论,攀缘纤维在胚胎浦肯野细胞上形成主要的突触支配,这一发现有力地支持了攀缘纤维在小脑发育中具有早期分化作用的假说。此外,在浦肯野细胞树突强烈重塑的时期,在浦肯野细胞树突中经常检测到“髓鞘样结构”,这表明它们可能至少部分代表了膜更新的真实超微结构标记,可识别浦肯野细胞树突重排发生的部位。最后,与退化树突相邻的攀缘纤维终末通常未显示退化迹象这一发现,使我们推测攀缘纤维从胞体周围向树突位置的移动可能是由浦肯野细胞树突重塑驱动的。

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