Pedersen Anna Hauntoft, Heller R Scott
Department of Developmental Biology, Hagedorn Research Institute, Niels Steensensvej 6, DK2820 Gentofte, Denmark.
Biochem Biophys Res Commun. 2005 Aug 5;333(3):961-8. doi: 10.1016/j.bbrc.2005.05.189.
Wnt signalling is involved in many developmental processes such as proliferation, differentiation, cell fate decisions, and morphogenesis. However, little is known about Wnt signalling during pancreas development. Multiple Wnt ligands and Frizzled receptors are expressed in the embryonic mouse pancreas, the surrounding mesenchyme, and have also been detected in the chicken endoderm during development. The aim of this study was to investigate the role of canonical Wnt signalling on endocrine cell development by use of the in ovo electroporation of the chicken endoderm. Overexpression with a constitutive active form of beta-catenin in combination with Ngn3 resulted in reduced numbers of glucagon cells. dnLEF-1 or naked-1 did not alter endocrine cell differentiation when co-expressed with Ngn3, but dnLEF-1 appeared to have some potential for inhibiting delamination of Ngn3 cells. In addition, neuronal beta-III-tubulin, which had previously been considered a specific marker for neuronal cells, was observed in the pancreas and was upregulated in the electroporated Ngn3 cells and thus may be a new endocrine marker in the chicken.
Wnt信号通路参与许多发育过程,如增殖、分化、细胞命运决定和形态发生。然而,关于胰腺发育过程中的Wnt信号通路,我们所知甚少。多种Wnt配体和卷曲受体在胚胎小鼠胰腺、周围间充质中表达,在发育过程中的鸡内胚层中也有检测到。本研究的目的是通过鸡内胚层的卵内电穿孔来研究经典Wnt信号通路在内分泌细胞发育中的作用。β-连环蛋白的组成型活性形式与Ngn3共同过表达导致胰高血糖素细胞数量减少。dnLEF-1或naked-1与Ngn3共表达时不会改变内分泌细胞分化,但dnLEF-1似乎有一定潜力抑制Ngn3细胞的分层。此外,神经元β-III-微管蛋白以前被认为是神经元细胞的特异性标志物,在胰腺中被观察到,并且在电穿孔的Ngn3细胞中上调,因此可能是鸡中的一种新的内分泌标志物。