Max Planck Institute for Heart and Lung Research, Department of Developmental Genetics, Bad Nauheim, Germany.
Max Planck Institute for Heart and Lung Research, Department of Developmental Genetics, Bad Nauheim, Germany.
Dev Biol. 2020 Feb 15;458(2):228-236. doi: 10.1016/j.ydbio.2019.10.021. Epub 2019 Nov 4.
Significant efforts have advanced our understanding of foregut-derived organ development; however, little is known about the molecular mechanisms that underlie the formation of the hepatopancreatic ductal (HPD) system. Here, we report a role for the homeodomain transcription factor Hhex in directing HPD progenitor specification in zebrafish. Loss of Hhex function results in impaired HPD system formation. We found that Hhex specifies a distinct population of HPD progenitors that gives rise to the cystic duct, common bile duct, and extra-pancreatic duct. Since hhex is not uniquely expressed in the HPD region but is also expressed in endothelial cells and the yolk syncytial layer (YSL), we tested the role of blood vessels as well as the YSL in HPD formation. We found that blood vessels are required for HPD patterning, but not for HPD progenitor specification. In addition, we found that Hhex is required in both the endoderm and the YSL for HPD development. Our results shed light on the mechanisms directing endodermal progenitors towards the HPD fate and emphasize the tissue specific requirement of Hhex during development.
人们在研究前肠衍生器官的发育方面已经付出了巨大努力;然而,对于形成肝胰导管系统(HPD)的分子机制知之甚少。在这里,我们报告了同源域转录因子 Hhex 在指导斑马鱼 HPD 祖细胞特化中的作用。Hhex 功能的丧失导致 HPD 系统形成受损。我们发现 Hhex 指定了一个独特的 HPD 祖细胞群体,这些祖细胞产生了胆囊管、胆总管和胰外导管。由于 hhex 不仅在 HPD 区域表达,而且在内皮细胞和卵黄合胞层(YSL)中表达,因此我们测试了血管以及 YSL 在 HPD 形成中的作用。我们发现血管对于 HPD 的模式形成是必需的,但对于 HPD 祖细胞的特化不是必需的。此外,我们发现 Hhex 对于 HPD 的发育,在内胚层和 YSL 中都是必需的。我们的研究结果阐明了指导内胚层祖细胞向 HPD 命运发展的机制,并强调了 Hhex 在发育过程中的组织特异性需求。