Hou Juan, Wei Wei, Saund Ranajeet S, Xiang Ping, Cunningham Thomas J, Yi Yuyin, Alder Olivia, Lu Daphne Y D, Savory Joanne G A, Krentz Nicole A J, Montpetit Rachel, Cullum Rebecca, Hofs Nicole, Lohnes David, Humphries R Keith, Yamanaka Yojiro, Duester Gregg, Saijoh Yukio, Hoodless Pamela A
Terry Fox Laboratory, BC Cancer Agency, Vancouver, British Columbia, V5Z 1L3, Canada.
Department of Neurobiology and Anatomy, University of Utah, Salt Lake City, UT 84132-3401, USA.
Development. 2014 Oct;141(19):3772-81. doi: 10.1242/dev.108274. Epub 2014 Sep 10.
Although many regulatory networks involved in defining definitive endoderm have been identified, the mechanisms through which these networks interact to pattern the endoderm are less well understood. To explore the mechanisms involved in midgut patterning, we dissected the transcriptional regulatory elements of nephrocan (Nepn), the earliest known midgut specific gene in mice. We observed that Nepn expression is dramatically reduced in Sox17(-/-) and Raldh2(-/-) embryos compared with wild-type embryos. We further show that Nepn is directly regulated by Sox17 and the retinoic acid (RA) receptor via two enhancer elements located upstream of the gene. Moreover, Nepn expression is modulated by Activin signaling, with high levels inhibiting and low levels enhancing RA-dependent expression. In Foxh1(-/-) embryos in which Nodal signaling is reduced, the Nepn expression domain is expanded into the anterior gut region, confirming that Nodal signaling can modulate its expression in vivo. Together, Sox17 is required for Nepn expression in the definitive endoderm, while RA signaling restricts expression to the midgut region. A balance of Nodal/Activin signaling regulates the anterior boundary of the midgut expression domain.
尽管已经确定了许多参与确定定形内胚层的调控网络,但这些网络相互作用以形成内胚层模式的机制仍不太清楚。为了探究中肠模式形成所涉及的机制,我们剖析了小鼠中最早已知的中肠特异性基因肾钙黏蛋白(Nepn)的转录调控元件。我们观察到,与野生型胚胎相比,Sox17基因敲除(-/-)和视黄醛脱氢酶2(Raldh2)基因敲除(-/-)胚胎中的Nepn表达显著降低。我们进一步表明,Nepn由Sox17和视黄酸(RA)受体通过位于该基因上游的两个增强子元件直接调控。此外,Nepn表达受激活素信号传导调节,高水平抑制而低水平增强RA依赖性表达。在Nodal信号传导降低的Foxh1基因敲除(-/-)胚胎中,Nepn表达域扩展到前肠区域,证实Nodal信号传导可在体内调节其表达。总之,Sox17是定形内胚层中Nepn表达所必需的,而RA信号传导将表达限制在中肠区域。Nodal/激活素信号传导的平衡调节中肠表达域的前边界。