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金本位控制果蝇多树突分支神经元树突伸长和分支。

Golden goal controls dendrite elongation and branching of multidendritic arborization neurons in Drosophila.

机构信息

Max Planck Institute of Neurobiology, Am Klopferspitz 18, Martinsried, 82152, Germany; Tokyo Institute of Technology, Graduate School of Bioscience & Biotechnology, Nagatsuta 4259, Midoriku, Yokohama, 226-8501, Japan.

出版信息

Genes Cells. 2013 Nov;18(11):960-73. doi: 10.1111/gtc.12089. Epub 2013 Aug 6.

Abstract

Precise refinement of axonal and dendritic patterns is essential for the maturation of functional neuronal circuits. Although several transmembrane molecules have been shown to control the development of both axons and dendrites, the molecular mechanisms that regulate these different processes are poorly understood. Golden Goal (Gogo) is one of the molecules that are known to control the development of axons in the Drosophila visual system. In this study, we analyzed Gogo function in dendritic field formation of dorsal multidendritic arborization (md-da) neurons of the Drosophila Peripheral Nervous System. We showed that Gogo is required to restrain the growth of ddaC dendrites toward the midline in the embryo. During larval stages, Gogo promotes dendritic branching of the complex classIV ddaC neurons. However, over-expression of Gogo restrained dendritic branch formation in ddaC neurons, and this phenotype was enhanced by co-over-expression with Flamingo (Fmi), a partner of Gogo in axon guidance. These results suggest Gogo plays important roles in maintaining homeostasis of dendritic branching. Like axons, the cytoplasmic part of Gogo is required for its function in dendritic tree formation, suggesting that Gogo conveys information from extracellular cues to intracellular molecules that control dendrite development.

摘要

精确调整轴突和树突的形态对于功能性神经元回路的成熟至关重要。尽管已经有几种跨膜分子被证明可以控制轴突和树突的发育,但调节这些不同过程的分子机制还知之甚少。Golden Goal (Gogo) 是已知可以控制果蝇视觉系统中轴突发育的分子之一。在这项研究中,我们分析了 Gogo 在果蝇外周神经系统中背多树突分支(dorsal multidendritic arborization,md-da)神经元树突场形成中的功能。我们发现 Gogo 对于抑制胚胎中 ddaC 树突向中线生长是必需的。在幼虫阶段,Gogo 促进了复杂的 classIV ddaC 神经元的树突分支。然而,Gogo 的过表达抑制了 ddaC 神经元的树突分支形成,并且这种表型在与 Flamingo (Fmi) 共过表达时增强,Fmi 是 Gogo 在轴突导向中的伴侣。这些结果表明 Gogo 在维持树突分支的平衡中发挥重要作用。与轴突一样,Gogo 的细胞质部分对于其在树突形成中的功能是必需的,这表明 Gogo 将来自细胞外线索的信息传递到控制树突发育的细胞内分子。

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