首页> 美国卫生研究院文献>other >The Nogo-C2/Nogo Receptor Complex Regulates the Morphogenesis of Zebrafish Lateral Line Primordium through Modulating the Expression of dkk1b a Wnt Signal Inhibitor
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The Nogo-C2/Nogo Receptor Complex Regulates the Morphogenesis of Zebrafish Lateral Line Primordium through Modulating the Expression of dkk1b a Wnt Signal Inhibitor

机译:Nogo-C2 / Nogo受体复合物通过调节Wnt信号抑制剂dkk1b的表达来调节斑马鱼侧线原基的形态发生。

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摘要

The fish lateral line (LL) is a mechanosensory system closely related to the hearing system of higher vertebrates, and it is composed of several neuromasts located on the surface of the fish. These neuromasts can detect changes in external water flow, to assist fish in maintaining a stationary position in a stream. In the present study, we identified a novel function of Nogo/Nogo receptor signaling in the formation of zebrafish neuromasts. Nogo signaling in zebrafish, like that in mammals, involves three ligands and four receptors, as well as three co-receptors (TROY, p75, and LINGO-1). We first demonstrated that Nogo-C2, NgRH1a, p75, and TROY are able to form a Nogo-C2 complex, and that disintegration of this complex causes defective neuromast formation in zebrafish. Time-lapse recording of the CldnB::lynEGFP transgenic line revealed that functional obstruction of the Nogo-C2 complex causes disordered morphogenesis, and reduces rosette formation in the posterior LL (PLL) primordium during migration. Consistent with these findings, hair-cell progenitors were lost from the PLL primordium in p75, TROY, and Nogo-C2/NgRH1a morphants. Notably, the expression levels of pea3, a downstream marker of Fgf signaling, and dkk1b, a Wnt signaling inhibitor, were both decreased in p75, TROY, and Nogo-C2/NgRH1a morphants; moreover, dkk1b mRNA injection could rescue the defects in neuromast formation resulting from knockdown of p75 or TROY. We thus suggest that a novel Nogo-C2 complex, consisting of Nogo-C2, NgRH1a, p75, and TROY, regulates Fgf signaling and dkk1b expression, thereby ensuring stable organization of the PLL primordium.
机译:鱼侧线(LL)是与高级脊椎动物的听力系统密切相关的机械感官系统,它由位于鱼表面的数个神经质组成。这些神经质可以检测外部水流的变化,以帮助鱼类在溪流中保持固定位置。在本研究中,我们确定了Nogo / Nogo受体信号传导在斑马鱼神经质形成中的新功能。像哺乳动物一样,斑马鱼中的Nogo信号传导涉及三个配体和四个受体,以及三个共受体(TROY,p75和LINGO-1)。我们首先证明了Nogo-C2,NgRH1a,p75和TROY能够形成Nogo-C2复合物,并且该复合物的分解会导致斑马鱼中神经母细胞形成的缺陷。延时记录的CldnB :: lynEGFP转基因株系表明Nogo-C2复合物的功能性障碍导致形态发生异常,并减少了迁移过程中后LL(PLL)原基中的花环形成。与这些发现一致,p75,TROY和Nogo-C2 / NgRH1a突变体中的PLL原基丢失了毛细胞祖细胞。值得注意的是,在p75,TROY和Nogo-C2 / NgRH1a突变体中,豌豆3(Fgf信号的下游标记)和dkk1b(Wnt信号的抑制剂)的表达水平均降低。此外,dkk1b mRNA注射可以挽救p75或TROY敲低引起的神经肥大形成缺陷。因此,我们建议由Nogo-C2,NgRH1a,p75和TROY组成的新型Nogo-C2复合物调节Fgf信号传导和dkk1b表达,从而确保PLL原基的稳定组织。

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