Department of Developmental and Cell Biology, 2011 Biological Sciences 3, University of California, Irvine, 92697-2300, USA.
Center for Cancer Research, Massachusetts General Hospital, Building 149, 13th Street, Charlestown, MA 02129, USA.
Development. 2018 Sep 17;145(18):dev147769. doi: 10.1242/dev.147769.
The developing vertebrate embryo is exquisitely sensitive to retinoic acid (RA) concentration, particularly during anteroposterior patterning. In contrast to Nodal and Wnt signaling, RA was not previously considered to be an instructive signal in mesoderm formation during gastrulation. Here, we show in that RARγ is indispensable for the expression of early mesoderm markers and is, therefore, an obligatory factor in mesodermal competence and/or maintenance. We identified several novel targets upregulated by RA receptor signaling in the early gastrula that are expressed in the circumblastoporal ring and linked to mesodermal development. Despite overlapping expression patterns of the genes encoding the RA-synthesizing enzyme Aldh1a2 and the RA-degrading enzyme Cyp26a1, RARγ1 functions as a transcriptional activator in early mesoderm development, suggesting that RA ligand is available to the embryo earlier than previously appreciated. RARγ1 is required for cellular adhesion, as revealed by spontaneous dissociation and depletion of mRNA in animal caps harvested from RARγ1 knockdown embryos. RARγ1 knockdown obliterates somite boundaries, and causes loss of Myod protein in the presomitic mesoderm, but ectopic, persistent expression of Myod protein in the trunk. Thus, RARγ1 is required for stabilizing the mesodermal fate, myogenic commitment, somite boundary formation, and terminal skeletal muscle differentiation.
发育中的脊椎动物胚胎对视黄酸(RA)浓度非常敏感,特别是在前后模式形成过程中。与 Nodal 和 Wnt 信号不同,RA 以前不被认为是原肠胚形成过程中中胚层形成的指导信号。在这里,我们表明在中,RARγ对于早期中胚层标记物的表达是必不可少的,因此是中胚层能力和/或维持的必需因素。我们鉴定了几个在早期原肠胚中由 RA 受体信号上调的新靶标,这些靶标在环绕胚孔的环中表达,并与中胚层发育有关。尽管编码 RA 合成酶 Aldh1a2 和 RA 降解酶 Cyp26a1 的基因的表达模式重叠,但 RARγ1在早期中胚层发育中作为转录激活因子发挥作用,这表明 RA 配体比以前认为的更早地提供给胚胎。RARγ1 对于细胞粘附是必需的,这是通过从 RARγ1 敲低胚胎中收获的动物帽中自发解离和耗尽 mRNA 来揭示的。RARγ1 敲低消除了体节边界,并导致前体节中 Myod 蛋白的丢失,但在中胚层中异位、持续表达 Myod 蛋白。因此,RARγ1 对于稳定中胚层命运、成肌细胞决定、体节边界形成和终末骨骼肌分化是必需的。