Nishitani Eriko, Li Chong, Lee Jaehoon, Hotta Hiroyo, Katayama Yuta, Yamaguchi Masahiro, Kinoshita Tsutomu
Department of Bioscience, School of Science and Technology, Kwansei Gakuin University, Hyogo, 669-1337, Japan.
Department of Life Science, Faculty of Science, Rikkyo University, Tokyo, 171-8501, Japan.
Dev Growth Differ. 2015 Dec;57(9):591-600. doi: 10.1111/dgd.12246. Epub 2015 Dec 14.
POU class V (POU-V) transcription factors play the important role in maintenance of pluripotency and cell differentiation. Pou5f3.2 (Oct25), one of Xenopus POU-V transcription factors, shows the zygotic expression prior to gastrulation. In order to know the molecular mechanism of pou5f3.2 expression at gastrula stage, we examined a responsiveness of pou5f3.2 to Nodal signaling. Animal cap assay demonstrated that Xnr2 activates the gene expression of pou5f3.2. In comparative analysis of the 5'-flanking region of pou5f3.2 between Xenopus laevis and X. tropicalis, two conserved regions were detected within the flanking region. Reporter analyses showed that one of the conserved regions contained an enhancer region, which had several Smad2/3 and FoxH1 binding motifs. ChIP assay demonstrated that Smad2 binds to the enhancer region. These results suggest that Nodal signaling induces zygotic expression of pou5f3.2 at gastrula stage. To understand a role of pou5f3.2 in gastrula embryos, morpholino oligo DNA of pou5f3.2 was injected into the lateral side of one blastomere at the 2-cell stage. The morphant embryos showed diminution of Xbra1 expression and gastrulation defect in the injection side, suggesting the essential role of pou5f3.2 at the gastrula stage. Xbra1 expression and gastrulation were also inhibited by injecting with the synthesized RNAs of pou5f3.2. Furthermore, in the pou5f3.2-injected embryo, gene expression of p27Xic1 was drastically suppressed, and the number of dividing cells increased in the injection side. These results suggest that one role of pou5f3.2 is to keep the embryonic cells in undifferentiated and proliferative state during gastrulation.
POU 第 V 类(POU-V)转录因子在维持多能性和细胞分化中发挥着重要作用。非洲爪蟾的 POU-V 转录因子之一 Pou5f3.2(Oct25)在原肠胚形成之前呈现合子表达。为了了解原肠胚阶段 pou5f3.2 表达的分子机制,我们检测了 pou5f3.2 对 Nodal 信号通路的反应性。动物帽实验表明 Xnr2 激活了 pou5f3.2 的基因表达。在非洲爪蟾和热带爪蟾之间对 pou5f3.2 的 5'侧翼区域进行比较分析时,在侧翼区域内检测到两个保守区域。报告基因分析表明其中一个保守区域包含一个增强子区域,该区域有几个 Smad2/3 和 FoxH1 结合基序。染色质免疫沉淀实验表明 Smad2 与该增强子区域结合。这些结果表明 Nodal 信号通路在原肠胚阶段诱导 pou5f3.2 的合子表达。为了了解 pou5f3.2 在原肠胚胚胎中的作用,在二细胞期将 pou5f3.2 的吗啉代寡聚 DNA 注射到一个卵裂球的侧面。形态发生素处理的胚胎在注射侧显示 Xbra1 表达减少和原肠胚形成缺陷,这表明 pou5f3.2 在原肠胚阶段起着重要作用。注射 pou5f3.2 的合成 RNA 也抑制了 Xbra1 表达和原肠胚形成。此外,在注射了 pou5f3.2 的胚胎中,p27Xic1 的基因表达被大幅抑制,并且注射侧的分裂细胞数量增加。这些结果表明 pou5f3.2 的一个作用是在原肠胚形成过程中使胚胎细胞保持未分化和增殖状态。