首页> 美国卫生研究院文献>The Journal of Neuroscience >F3/F11 cell surface molecule expression in the developing mouse cerebellum is polarized at synaptic sites and within granule cells
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F3/F11 cell surface molecule expression in the developing mouse cerebellum is polarized at synaptic sites and within granule cells

机译:发育中的小鼠小脑中的F3 / F11细胞表面分子表达在突触部位和颗粒细胞内极化

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摘要

The distribution of the F3/F11 neuronal cell surface molecule was investigated in the developing and adult mouse cerebellum by immunocytochemistry at the light and electron microscopic levels. F3/F11 was confined to subsets of neuronal types, since the Purkinje cell body and dendritic arborization as well as the stellate cells were not immunoreactive. In the young developing cerebellum, the granule cell axons strongly express F3/F11 as soon as they begin to grow, consistent with a functional role in promoting directional outgrowth of neuronal processes. In 10-d-old and adult cerebella, the granule cell bodies and dendrites were not immunoreactive whereas the parallel fibers, which are the granule cell axons, were labeled including in their presynaptic varicosities. By contrast, dendrites, cell bodies, and axons of Golgi cells were labeled by anti-F3 antibodies. Hence, F3/F11 can either be expressed throughout the cell or be polarized to the axons. This raises the question of how segregation of the glypiated F3/F11 molecule between different subcellular compartments depending on the type of neuron is achieved. F3/F11 was found to be present at three types of synaptic sites, suggesting that it might play a role in the formation and maintenance of synapses. However, in each type of synpase, F3/F11 was present at only the pre- or postsynaptic site, never at both: the parallel fiber varicosities contained F3/F11 whereas the postsynaptic compartment in contact, that is, the Purkinje cell dendritic spines, did not. The granule cell dendrites were unlabeled while the mossy fiber terminals contacting them were immunoreactive, and finally, the Golgi cell dendrites and dendritic spines were labeled while the presynaptic compartment contacting them was not. If F3/F11 functions as an adhesion molecule in vivo as indicated by in vitro assays, F3/F11-mediated adhesion is likely to be heterophilic.
机译:F3 / F11神经元细胞表面分子在发育和成年小鼠小脑中的分布通过免疫细胞化学在光学和电子显微镜下进行研究。 F3 / F11仅限于神经元类型的子集,因为Purkinje细胞体和树突状乔化以及星状细胞均不具有免疫反应性。在年轻的小脑中,颗粒细胞轴突一旦开始生长,就会强烈表达F3 / F11,这与促进神经元过程定向生长的功能性作用一致。在10 d龄和成年小脑中,颗粒细胞体和树突没有免疫反应性,而标记为颗粒细胞轴突的平行纤维包括突触前静脉曲张。相比之下,高尔基细胞的树突,细胞体和轴突被抗F3抗体标记。因此,F3 / F11可以在整个细胞中表达,也可以极化到轴突。这就提出了一个问题,即如何根据神经元的类型实现不同亚细胞区之间的糖化F3 / F11分子的分离。 F3 / F11被发现存在于三种类型的突触位点,表明它可能在突触的形成和维持中起作用。但是,在每种类型的突触酶中,F3 / F11仅存在于突触前或突触后的位点,而从不在两个位置:平行纤维静脉曲张包含F3 / F11,而突触后的隔室即浦肯野细胞的树突棘,没有。颗粒细胞树突未标记,而与之接触的苔藓纤维末端具有免疫反应性,最后,高尔基体细胞树突和树突棘被标记,而突触前区未与之接触。如果F3 / F11如体外试验所示在体内起黏附分子的作用,则F3 / F11介导的黏附很可能是多亲的。

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