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Wnt7b is required for epithelial progenitor growth and operates during epithelial-to-mesenchymal signaling in pancreatic development

机译:Wnt7b是上皮祖细胞生长所必需的,并且在胰腺发育中的上皮到间充质信号传导过程中起作用

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Wnt signaling is a well conserved pathway critical for growth, patterning and differentiation of multiple tissues and organs. Previous studies on Wnt signaling in the pancreas have been based predominantly on downstream pathway effector genes such as beta-catenin. We here provide evidence that the canonical-pathway member Wnt7b is a physiological regulator of pancreatic progenitor cell growth. Genetic deletion of Wnt7b in the developing pancreas leads to pancreatic hypoplasia due to reduced proliferation of pancreatic progenitor cells during the phase of pancreas development marked by rapid progenitor cell growth. While the differentiation potential of pancreatic progenitor cells is unaffected by Wnt7b deletion, through a gain-of-function analysis, we find that early pancreatic progenitor cells are highly sensitive to Wnt7b expression, but later lose such competence. By modulating the level and the temporal windows of Wnt7b expression we demonstrate a significant impact on organ growth and morphogenesis particularly during the early branching stages of the organ, which negatively affects generation of the pro-endocrine (Ngn3(+)/Nkx6.1(+)), and pro-acinar (Ptf1A(+)) fields. Consequently, Wnt7b gain-of-function results in failed morphogenesis and almost complete abrogation of the differentiation of endocrine and acinar cells, leading to cystic epithelial metaplasia expressing ductal markers including Sox9, Hnf6 and Hnf1 beta While Wnt7b is expressed exclusively in the developing pancreatic epithelium, adjacent mesenchymal cells in the organ display a direct trophic response to elevated Wnt7b and increase expression of Left cFos and desmin. Of note, in contrast to the pancreatic epithelium, the pancreatic mesenchyme remains competent to respond to Wnt7b ligand, at later stages in development. We conclude that Wnt7b helps coordinate pancreatic development through autocrine, as well as paracrine mechanisms, and as such represents a novel bi-modal morphogen ligand. (C) 2015 Elsevier Inc. All rights reserved.
机译:Wnt信号传导是一个保存完好的途径,对多种组织和器官的生长,模式形成和分化至关重要。胰腺中Wnt信号的先前研究主要基于下游通路效应基因,例如β-catenin。我们在这里提供证据,规范途径成员Wnt7b是胰腺祖细胞生长的生理调节剂。 Wnt7b在发育中的胰腺中的基因缺失导致胰腺发育不全,这是由于在胰腺发育阶段以快速祖细胞生长为特征的胰腺祖细胞增殖减少所致。虽然胰腺祖细胞的分化潜能不受Wnt7b缺失的影响,但通过功能增益分析,我们发现早期的胰腺祖细胞对Wnt7b的表达高度敏感,但后来却失去了这种能力。通过调节Wnt7b表达的水平和时间窗口,我们证明了对器官生长和形态发生的重大影响,特别是在器官的早期分支阶段,这对前内分泌(Ngn3(+)/ Nkx6.1( +))和pro-acinar(Ptf1A(+))字段。因此,Wnt7b功能获得会导致失败的形态发生并几乎完全消除内分泌和腺泡细胞的分化,从而导致囊性上皮化生表达包括Sox9,Hnf6和Hnf1 beta在内的导管标记,而Wnt7b仅在发育中的胰腺上皮中表达,器官中相邻的间充质细胞对Wnt7b升高表现出直接的营养反应,并增加Left cFos和desmin的表达。值得注意的是,与胰腺上皮相比,胰腺间充质在发育的后期仍保持对Wnt7b配体的反应能力。我们得出结论,Wnt7b可通过自分泌以及旁分泌机制帮助协调胰腺发育,因此代表了一种新型的双峰形态发生素配体。 (C)2015 Elsevier Inc.保留所有权利。

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