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刺猬信号通路调控斑马鱼幼虫及成体下丘脑神经发生。

Hedgehog Signaling Regulates Neurogenesis in the Larval and Adult Zebrafish Hypothalamus.

机构信息

Department of Biology, University of Massachusetts, Amherst, 01003 MA.

出版信息

eNeuro. 2020 Oct 26;7(6). doi: 10.1523/ENEURO.0226-20.2020. Print 2020 Nov-Dec.

Abstract

Neurogenesis is now known to play a role in adult hypothalamic function, yet the cell-cell mechanisms regulating this neurogenesis remain poorly understood. Here, we show that Hedgehog (Hh)/Gli signaling positively regulates hypothalamic neurogenesis in both larval and adult zebrafish and is necessary and sufficient for normal hypothalamic proliferation rates. Hh-responsive radial glia represent a relatively highly proliferative precursor population that gives rise to dopaminergic, serotonergic, and GABAergic neurons. and transgenic reporter analyses revealed substantial heterogeneity in cell-cell signaling within the hypothalamic niche, with slow cycling Nestin-expressing cells residing among distinct and overlapping populations of Sonic Hh (Shh)-expressing, Hh-responsive, Notch-responsive, and Wnt-responsive radial glia. This work shows for the first time that Hh/Gli signaling is a key component of the complex cell-cell signaling environment that regulates hypothalamic neurogenesis throughout life.

摘要

神经发生现在被认为在成年下丘脑功能中发挥作用,但调节这种神经发生的细胞-细胞机制仍知之甚少。在这里,我们表明 Hedgehog(Hh)/Gli 信号在幼虫和成年斑马鱼的下丘脑神经发生中均具有正向调节作用,并且是正常下丘脑增殖率所必需且充分的。Hh 反应性放射状胶质细胞代表了一个相对高增殖的前体细胞群,可产生多巴胺能、5-羟色胺能和 GABA 能神经元。 和转基因报告基因分析揭示了下丘脑龛内细胞间信号传递的显著异质性,具有缓慢循环的巢蛋白表达细胞存在于不同且重叠的 Sonic Hh(Shh)表达、Hh 反应性、Notch 反应性和 Wnt 反应性放射状胶质细胞中。这项工作首次表明,Hh/Gli 信号是调节整个生命周期下丘脑神经发生的复杂细胞-细胞信号传递环境的关键组成部分。

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