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Whole-mount in situ hybridization detection of mRNA in GFP-marked Drosophila imaginal disc mosaic clones.在绿色荧光蛋白标记的果蝇成虫盘镶嵌克隆中对mRNA进行全组织原位杂交检测。
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Netrin-1: diversity in development.Netrin-1:发育中的多样性。
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Identity, origin, and migration of peripheral glial cells in the Drosophila embryo.果蝇胚胎中外周神经胶质细胞的身份、起源和迁移。
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Regulation of axon guidance by slit and netrin signaling in the Drosophila ventral nerve cord.果蝇腹神经索中Slit和Netrin信号对轴突导向的调控
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Independent functions of Slit-Robo repulsion and Netrin-Frazzled attraction regulate axon crossing at the midline in Drosophila.Slit-Robo排斥和Netrin-Frazzled吸引的独立功能调节果蝇中线处的轴突交叉。
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Netrins: beyond the brain.Netrin蛋白:超越大脑的作用
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Sculpting the nervous system: glial control of neuronal development.塑造神经系统:神经胶质细胞对神经元发育的调控
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8
ROBO directs axon crossing of segmental boundaries by suppressing responsiveness to relocalized Netrin.ROBO通过抑制对重新定位的Netrin的反应性来引导轴突跨越节段边界。
Nat Neurosci. 2006 Jan;9(1):58-66. doi: 10.1038/nn1612. Epub 2005 Dec 11.
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Semaphorins command cells to move.信号素指挥细胞移动。
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10
Roundabout 2 regulates migration of sensory neurons by signaling in trans.Roundabout 2通过反式信号传导调节感觉神经元的迁移。
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轴突导向辅助细胞形态发生决定了果蝇感觉神经元的树突方向和迁移。

Netrin-guided accessory cell morphogenesis dictates the dendrite orientation and migration of a Drosophila sensory neuron.

机构信息

Department of Anatomy and Cell Biology, University of Melbourne, VIC 3010, Australia.

出版信息

Development. 2010 Jul;137(13):2227-35. doi: 10.1242/dev.047795.

DOI:10.1242/dev.047795
PMID:20530550
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2882139/
Abstract

Accessory cells, which include glia and other cell types that develop in close association with neurons, have been shown to play key roles in regulating neuron development. However, the underlying molecular and cellular mechanisms remain poorly understood. A particularly intimate association between accessory cells and neurons is found in insect chordotonal organs. We have found that the cap cell, one of two accessory cells of v'ch1, a chordotonal organ in the Drosophila embryo, strongly influences the development of its associated neuron. As it projects a long dorsally directed cellular extension, the cap cell reorients the dendrite of the v'ch1 neuron and tows its cell body dorsally. Cap cell morphogenesis is regulated by Netrin-A, which is produced by epidermal cells at the destination of the cap cell process. In Netrin-A mutant embryos, the cap cell forms an aberrant, ventrally directed process. As the cap cell maintains a close physical connection with the tip of the dendrite, the latter is dragged into an abnormal position and orientation, and the neuron fails to undergo its normal dorsal migration. Misexpression of Netrin-A in oenocytes, secretory cells that lie ventral to the cap cell, leads to aberrant cap cell morphogenesis, suggesting that Netrin-A acts as an instructive cue to direct the growth of the cap cell process. The netrin receptor Frazzled is required for normal cap cell morphogenesis, and mutant rescue experiments indicate that it acts in a cell-autonomous fashion.

摘要

辅助细胞,包括胶质细胞和其他与神经元密切相关的细胞类型,已被证明在调节神经元发育中发挥关键作用。然而,其潜在的分子和细胞机制仍知之甚少。在昆虫的听毛器官中发现了辅助细胞与神经元之间特别密切的联系。我们发现,在果蝇胚胎的一个听毛器官 v'ch1 中,有两种辅助细胞之一的帽细胞,强烈影响其相关神经元的发育。由于它伸出一个长长的背向细胞延伸,帽细胞使 v'ch1 神经元的树突转向背侧,并将其细胞体拖向背侧。帽细胞的形态发生受 Netrin-A 的调控,Netrin-A 由位于帽细胞突起目的地的表皮细胞产生。在 Netrin-A 突变体胚胎中,帽细胞形成异常的、腹向突起。由于帽细胞与树突的尖端保持着紧密的物理连接,后者被拖入异常的位置和方向,神经元无法进行正常的背向迁移。在位于帽细胞下方的分泌细胞 oenocytes 中异位表达 Netrin-A,会导致帽细胞形态发生异常,表明 Netrin-A 作为一种指导线索,引导帽细胞突起的生长。Netrin 受体 Frazzled 对于正常的帽细胞形态发生是必需的,而且突变体挽救实验表明它以细胞自主性的方式发挥作用。