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发动蛋白在鸡视网膜顶盖系统中的发育表达。

Developmental expression of dynamin in the chick retinotectal system.

作者信息

Bergmann M, Grabs D, Rager G

机构信息

Institute of Anatomy and Special Embryology, University Fribourg, Fribourg, Switzerland.

出版信息

J Histochem Cytochem. 1999 Oct;47(10):1297-306. doi: 10.1177/002215549904701009.

DOI:10.1177/002215549904701009
PMID:10490458
Abstract

Dynamin I, a GTPase involved in the endocytic cycle of synaptic vesicle membranes, is believed to support axonal outgrowth and/or synaptogenesis. To explore the temporal and spatial patterns of dynamin I distribution in neuronal morphogenesis, we compared the developmental expression of dynamin with the expression of presynaptic membrane proteins such as SV2, synaptotagmin, and syntaxin in the chick primary visual pathway. Western blots of retina and tectum revealed a steady increase of synaptotagmin and syntaxin from embryonic Day 7 (E7) to E11, whereas for the same time frame no detectable increase of dynamin was found. Later stages showed increasing amounts of all tested proteins until the first postnatal week. Immunofluorescence revealed that SV2, synaptotagmin, and syntaxin are present in retinal ganglion cell axons from E4 on. In later stages, the staining pattern in the retina and along the visual pathway paralleled the formation and maturation of axons. In contrast, dynamin is not detectable by immunofluorescence in the developing retina and optic tectum before synapse formation. Our data indicate that, in contrast to the early expression of synaptotagmin, SV2, and syntaxin during axonal growth, dynamin is upregulated after synapse formation, suggesting its function predominantly during and after synaptogenesis but not in axonogenesis.(J Histochem Cytochem 47:1297-1306, 1999)

摘要

发动蛋白I是一种参与突触小泡膜内吞循环的GTP酶,被认为有助于轴突生长和/或突触形成。为了探究发动蛋白I在神经元形态发生过程中的时空分布模式,我们比较了发动蛋白在鸡初级视觉通路中的发育表达与突触前膜蛋白如SV2、突触结合蛋白和突触融合蛋白的表达。视网膜和视顶盖的蛋白质免疫印迹显示,从胚胎第7天(E7)到E11,突触结合蛋白和突触融合蛋白稳步增加,而在同一时间段内未发现发动蛋白有可检测到的增加。后期显示所有测试蛋白的量都在增加,直到出生后第一周。免疫荧光显示,从E4开始,视网膜神经节细胞轴突中就存在SV2、突触结合蛋白和突触融合蛋白。在后期,视网膜和沿视觉通路的染色模式与轴突的形成和成熟平行。相比之下,在突触形成之前,发育中的视网膜和视顶盖中通过免疫荧光无法检测到发动蛋白。我们的数据表明,与轴突生长过程中突触结合蛋白、SV2和突触融合蛋白的早期表达不同,发动蛋白在突触形成后上调,表明其主要在突触形成期间及之后发挥作用,而不是在轴突发生过程中发挥作用。(《组织化学与细胞化学杂志》47:1297 - 1306, 1999)

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