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对体内单个神经元进行基因操作揭示了弗拉明戈蛋白在神经元形态发生中的特定作用。

Genetic manipulation of single neurons in vivo reveals specific roles of flamingo in neuronal morphogenesis.

作者信息

Sweeney Neal T, Li Wenjun, Gao Fen-Biao

机构信息

Gladstone Institute of Neurological Disease, University of California, San Francisco, 94141-9100, USA.

出版信息

Dev Biol. 2002 Jul 1;247(1):76-88. doi: 10.1006/dbio.2002.0702.

Abstract

To study the roles of intracellular factors in neuronal morphogenesis, we used the mosaic analysis with a repressible cell marker (MARCM) technique to visualize identifiable single multiple dendritic (MD) neurons in living Drosophila larvae. We found that individual neurons in the peripheral nervous system (PNS) developed clear morphological polarity and diverse dendritic branching patterns in larval stages. Each MD neuron in the same dorsal cluster developed a unique dendritic field, suggesting that they have specific physiological functions. Single-neuron analysis revealed that Flamingo did not affect the general dendritic branching patterns in postmitotic neurons. Instead, Flamingo limited the extension of one or more dorsal dendrites without grossly affecting lateral branches. The dendritic overextension phenotype was partially conferred by the precocious initiation of dorsal dendrites in flamingo mutant embryos. In addition, Flamingo is required cell autonomously to promote axonal growth and to prevent premature axonal branching of PNS neurons. Our molecular analysis also indicated that the amino acid sequence near the first EGF motif is important for the proper localization and function of Flamingo. These results demonstrate that Flamingo plays a role in early neuronal differentiation and exerts specific effects on dendrites and axons.

摘要

为了研究细胞内因子在神经元形态发生中的作用,我们使用了带有可抑制细胞标记的镶嵌分析(MARCM)技术,以在活体果蝇幼虫中可视化可识别的单个多树突(MD)神经元。我们发现,外周神经系统(PNS)中的单个神经元在幼虫阶段形成了清晰的形态极性和多样的树突分支模式。同一背侧簇中的每个MD神经元都形成了独特的树突场,这表明它们具有特定的生理功能。单神经元分析表明,Flamingo并不影响有丝分裂后神经元的一般树突分支模式。相反,Flamingo限制了一个或多个背侧树突的延伸,而对侧支没有明显影响。树突过度延伸表型部分是由flamingo突变胚胎中背侧树突的早熟起始导致的。此外,Flamingo在细胞自主水平上是促进轴突生长和防止PNS神经元过早轴突分支所必需的。我们的分子分析还表明,第一个EGF基序附近的氨基酸序列对于Flamingo的正确定位和功能很重要。这些结果表明,Flamingo在早期神经元分化中起作用,并对树突和轴突产生特定影响。

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