Wai Htoo Aung, Kawakami Koichi, Wada Hironori, Müller Ferenc, Vernallis Ann Beatrice, Brown Geoffrey, Johnson William Eustace Basil
1 Life and Health Sciences, Aston University , Birmingham, United Kingdom .
Stem Cells Dev. 2015 Feb 15;24(4):507-19. doi: 10.1089/scd.2014.0235. Epub 2014 Nov 10.
Retinoic acid (RA) signaling is important to normal development. However, the function of the different RA receptors (RARs)--RARα, RARβ, and RARγ--is as yet unclear. We have used wild-type and transgenic zebrafish to examine the role of RARγ. Treatment of zebrafish embryos with an RARγ-specific agonist reduced somite formation and axial length, which was associated with a loss of hoxb13a expression and less-clear alterations in hoxc11a or myoD expression. Treatment with the RARγ agonist also disrupted formation of tissues arising from cranial neural crest, including cranial bones and anterior neural ganglia. There was a loss of Sox 9-immunopositive neural crest stem/progenitor cells in the same anterior regions. Pectoral fin outgrowth was blocked by RARγ agonist treatment. However, there was no loss of Tbx-5-immunopositive lateral plate mesodermal stem/progenitor cells and the block was reversed by agonist washout or by cotreatment with an RARγ antagonist. Regeneration of the caudal fin was also blocked by RARγ agonist treatment, which was associated with a loss of canonical Wnt signaling. This regenerative response was restored by agonist washout or cotreatment with the RARγ antagonist. These findings suggest that RARγ plays an essential role in maintaining stem/progenitor cells during embryonic development and tissue regeneration when the receptor is in its nonligated state.
维甲酸(RA)信号通路对正常发育至关重要。然而,不同的RA受体(RARs)——RARα、RARβ和RARγ——的功能尚不清楚。我们利用野生型和转基因斑马鱼来研究RARγ的作用。用RARγ特异性激动剂处理斑马鱼胚胎会减少体节形成和轴向长度,这与hoxb13a表达缺失以及hoxc11a或myoD表达的不太明显的改变有关。用RARγ激动剂处理还会破坏源自颅神经嵴的组织的形成,包括颅骨和前神经节。在相同的前部区域,Sox 9免疫阳性的神经嵴干/祖细胞缺失。胸鳍生长被RARγ激动剂处理所阻断。然而,Tbx - 5免疫阳性的侧板中胚层干/祖细胞没有缺失,并且这种阻断可通过冲洗激动剂或与RARγ拮抗剂共同处理来逆转。尾鳍再生也被RARγ激动剂处理所阻断,这与经典Wnt信号通路的缺失有关。这种再生反应可通过冲洗激动剂或与RARγ拮抗剂共同处理来恢复。这些发现表明,当受体处于非结合状态时,RARγ在胚胎发育和组织再生过程中维持干/祖细胞方面起着至关重要的作用。