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hnf1ba 和 wnt2bb 特异性鉴定斑马鱼肝胰腺祖细胞

Specification of hepatopancreas progenitors in zebrafish by hnf1ba and wnt2bb.

机构信息

Sanford Children's Health Research Center, Programs in Genetic Disease, Development and Aging, and Stem Cell and Regenerative Biology, Graduate School of Biomedical Sciences, Sanford-Burnham Medical Research Institute, La Jolla, CA 92037, USA.

出版信息

Development. 2013 Jul;140(13):2669-79. doi: 10.1242/dev.090993. Epub 2013 May 29.

Abstract

Although the liver and ventral pancreas are thought to arise from a common multipotent progenitor pool, it is unclear whether these progenitors of the hepatopancreas system are specified by a common genetic mechanism. Efforts to determine the role of Hnf1b and Wnt signaling in this crucial process have been confounded by a combination of factors, including a narrow time frame for hepatopancreas specification, functional redundancy among Wnt ligands, and pleiotropic defects caused by either severe loss of Wnt signaling or Hnf1b function. Using a novel hypomorphic hnf1ba zebrafish mutant that exhibits pancreas hypoplasia, as observed in HNF1B monogenic diabetes, we show that hnf1ba plays essential roles in regulating β-cell number and pancreas specification, distinct from its function in regulating pancreas size and liver specification, respectively. By combining Hnf1ba partial loss of function with conditional loss of Wnt signaling, we uncover a crucial developmental window when these pathways synergize to specify the entire ventrally derived hepatopancreas progenitor population. Furthermore, our in vivo genetic studies demonstrate that hnf1ba generates a permissive domain for Wnt signaling activity in the foregut endoderm. Collectively, our findings provide a new model for HNF1B function, yield insight into pancreas and β-cell development, and suggest a new mechanism for hepatopancreatic specification.

摘要

虽然肝脏和腹胰腺被认为起源于共同的多能祖细胞池,但尚不清楚肝胰系统的这些祖细胞是否由共同的遗传机制决定。在这个关键过程中,确定 Hnf1b 和 Wnt 信号的作用的努力受到多种因素的困扰,包括肝胰指定的时间范围狭窄、Wnt 配体之间的功能冗余以及 Wnt 信号或 Hnf1b 功能的严重丧失或丧失引起的多效性缺陷。使用一种新型的 hnf1ba 斑马鱼突变体,该突变体表现出类似于 HNF1B 单基因糖尿病的胰腺发育不良,我们表明 hnf1ba 在调节β细胞数量和胰腺指定方面发挥着重要作用,分别与调节胰腺大小和肝脏指定的功能不同。通过将 hnf1ba 的部分功能丧失与条件性 Wnt 信号丧失相结合,我们揭示了这些途径协同指定整个腹侧衍生的肝胰祖细胞群体的关键发育窗口。此外,我们的体内遗传研究表明,hnf1ba 在前肠内胚层中产生 Wnt 信号活性的许可域。总的来说,我们的发现为 HNF1B 功能提供了一个新的模型,深入了解了胰腺和β细胞的发育,并提出了一种新的肝胰指定机制。

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