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成纤维细胞生长因子10调控肝胰管系统的模式形成和分化。

Fgf10 regulates hepatopancreatic ductal system patterning and differentiation.

作者信息

Dong P Duc Si, Munson Chantilly A, Norton William, Crosnier Cecile, Pan Xiufang, Gong Zhiyuan, Neumann Carl J, Stainier Didier Y R

机构信息

Department of Biochemistry and Biophysics, Programs in Developmental Biology, Genetics and Human Genetics, and the Diabetes Center, University of California, San Francisco, 1550 Fourth Street, San Francisco, California 94158, USA.

出版信息

Nat Genet. 2007 Mar;39(3):397-402. doi: 10.1038/ng1961. Epub 2007 Jan 28.

Abstract

During organogenesis, the foregut endoderm gives rise to the many different cell types that comprise the hepatopancreatic system, including hepatic, pancreatic and gallbladder cells, as well as the epithelial cells of the hepatopancreatic ductal system that connects these organs together and with the intestine. However, the mechanisms responsible for demarcating ducts versus organs are poorly understood. Here, we show that Fgf10 signaling from the adjacent mesenchyme is responsible for refining the boundaries between the hepatopancreatic duct and organs. In zebrafish fgf10 mutants, the hepatopancreatic ductal epithelium is severely dysmorphic, and cells of the hepatopancreatic ductal system and adjacent intestine misdifferentiate toward hepatic and pancreatic fates. Furthermore, Fgf10 also functions to prevent the differentiation of the proximal pancreas and liver into hepatic and pancreatic cells, respectively. These data shed light onto how the multipotent cells of the foregut endoderm, and subsequently those of the hepatopancreatic duct, are directed toward different organ fates.

摘要

在器官发生过程中,前肠内胚层产生构成肝胰系统的多种不同细胞类型,包括肝细胞、胰腺细胞和胆囊细胞,以及将这些器官彼此连接并与肠道相连的肝胰导管系统的上皮细胞。然而,划分导管与器官的机制仍知之甚少。在这里,我们表明来自相邻间充质的Fgf10信号负责细化肝胰导管与器官之间的边界。在斑马鱼fgf10突变体中,肝胰导管上皮严重畸形,肝胰导管系统和相邻肠道的细胞向肝和胰腺命运方向错误分化。此外,Fgf10还起到防止近端胰腺和肝脏分别分化为肝细胞和胰腺细胞的作用。这些数据揭示了前肠内胚层的多能细胞以及随后肝胰导管的细胞是如何被导向不同器官命运的。

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