Neurotrophins and cerebellar development.

D Lindholm, S Hamnér, U Zirrgiebel
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Abstract

Neurotrophins are structurally related molecules which regulate the survival and differentiation of various populations of neurons during development. In the cerebellum, the neurotophins and their Trk receptors are expressed at a relatively high level, suggesting an important function for these factors during development. There is also a tight age-dependent and spatial regulation of the molecules in the various cerebellar neurons. Previous studies have shown that BDNF and NT-3 have distinct biological effects on survival and differentiation of cerebellar granule neurons and Purkinje cells. Aside from acting as survival and differentiation factors, the neurotrophins could also have more subtle effects on neuronal function. It is also becoming increasingly evident, not the least from studies in neurotrophin deficient and in cerebellar mutant mice, that the neurotrophins act in concert with other factors and molecules in controlling neuronal development. We will here review some of the recent developments in the neurotrophin field with regard to cerebellum and also discuss what is known about the signaling event following stimulation of cerebellar neurons with BDNF and NT-3. The characterization of specific maturation stages and of genes which are involved and regulated by neurotrophins in developing cerebellum will help us to understand the processes of neuronal survival and differentiation in general.

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神经营养因子与小脑发育。
神经营养因子是一种结构相关的分子,在发育过程中调节各种神经元群体的生存和分化。在小脑中,神经啡肽及其Trk受体的表达水平相对较高,表明这些因子在发育过程中具有重要作用。在各种小脑神经元中也存在着紧密的年龄依赖性和空间调节。已有研究表明,BDNF和NT-3对小脑颗粒神经元和浦肯野细胞的存活和分化具有明显的生物学作用。除了作为生存和分化因子,神经营养因子也可能对神经元功能有更微妙的影响。越来越明显的是,神经营养因子缺乏和小脑突变小鼠的研究表明,神经营养因子与其他因素和分子协同作用,控制神经元发育。在这里,我们将回顾神经营养因子领域关于小脑的一些最新进展,并讨论已知的BDNF和NT-3刺激小脑神经元后的信号事件。对小脑发育过程中神经营养因子参与和调控的特定成熟阶段和基因的表征,将有助于我们从总体上理解神经元的生存和分化过程。
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