Kinoshita Hirofumi, Ohgane Nanae, Fujino Yuuri, Yabe Taijiro, Ovara Hiroki, Yokota Daisuke, Izuka Ayaka, Kage Daichi, Yamasu Kyo, Takada Shinji, Kawamura Akinori
Division of Life Science, Graduate School of Science and Engineering, Saitama University, Shimo-Okubo, Sakura-ku, Saitama, Saitama 338-8570, Japan.
Exploratory Research Center on Life and Living Systems & National Institute for Basic Biology, National Institutes of Natural Sciences, Okazaki, Aichi 444-8787, Japan.
Mech Dev. 2018 Aug;152:21-31. doi: 10.1016/j.mod.2018.06.001. Epub 2018 Jun 4.
Somites sequentially form with a regular interval by the segmentation from the anterior region of the presomitic mesoderm (PSM). The expression of several genes involved in the somite segmentation is switched off at the transition from the anterior PSM to somites. Zebrafish Ripply1, which down-regulates a T-box transcription factor Tbx6, is required for the suppression of segmentation gene expression. However, the functional roles of the Ripply-mediated suppression of segmentation gene expression at the anterior PSM remain elusive. In this study, we generated ripply1 mutants and examined genetic interaction between ripply1/2 and tbx6. Zebrafish ripply1 embryos failed to form the somite boundaries as was observed in knockdown embryos. We found that somite segmentation defects in ripply1 mutants were suppressed by heterozygous mutation of tbx6 or partial translational inhibition of tbx6 by antisense morpholino. We further showed that somite boundaries that were recovered in tbx6; ripply1 embryos were dependent on the function of ripply2, indicating that relative gene dosage between ripply1/2 and tbx6 plays a critical role in the somite formation. Interestingly, the expression of segmentation genes such mesp as was still not fully suppressed at the anterior PSM of tbx6; ripply1 embryos although the somite formation and rostral-caudal polarity of somites were properly established. Furthermore, impaired myogenesis was observed in the segmented somites in tbx6; ripply1 embryos. These results revealed that partial suppression of the segmentation gene expression by Ripply is sufficient to establish the rostral-caudal polarity of somites, and that stronger suppression of the segmentation gene expression by Ripply is required for proper myogenesis in zebrafish embryos.
体节通过前体节中胚层(PSM)前部区域的分割以规则的间隔依次形成。在从前部PSM到体节的转变过程中,几种参与体节分割的基因的表达被关闭。斑马鱼Ripply1可下调T-box转录因子Tbx6,它是抑制分割基因表达所必需的。然而,Ripply介导的前部PSM分割基因表达抑制的功能作用仍不清楚。在本研究中,我们生成了ripply1突变体,并研究了ripply1/2与tbx6之间的遗传相互作用。斑马鱼ripply1胚胎未能形成体节边界,这与在敲低胚胎中观察到的情况一样。我们发现,tbx6的杂合突变或反义吗啉代对tbx6的部分翻译抑制可抑制ripply1突变体中的体节分割缺陷。我们进一步表明,在tbx6;ripply1胚胎中恢复的体节边界依赖于ripply2的功能,这表明ripply1/2与tbx6之间的相对基因剂量在体节形成中起关键作用。有趣的是,尽管体节的形成和头尾极性已正确建立,但在tbx6;ripply1胚胎的前部PSM中,诸如mesp等分割基因的表达仍未完全被抑制。此外,在tbx6;ripply1胚胎的分割体节中观察到了肌生成受损。这些结果表明, Ripply对分割基因表达的部分抑制足以建立体节的头尾极性,而斑马鱼胚胎中适当的肌生成需要Ripply对分割基因表达的更强抑制。