First Department of Internal Medicine, Nara Medical University, Kashihara, Nara, Japan.
PLoS One. 2011;6(9):e24058. doi: 10.1371/journal.pone.0024058. Epub 2011 Sep 13.
In order to define the molecular mechanisms regulating the specification and differentiation of pancreatic β-islet cells, we investigated the effect of upregulating Pdx1 and Ngn3 during the differentiation of the β-islet-like cells from murine embryonic stem (ES) cell-derived activin induced-endoderm. Induced overexpression of Pdx1 resulted in a significant upregulation of insulin (Ins1 and Ins2), and other pancreas-related genes. To enhance the developmental progression from the pancreatic bud to the formation of the endocrine lineages, we induced the overexpression express of Ngn3 together with Pdx1. This combination dramatically increased the level and timing of maximal Ins1 mRNA expression to approximately 100% of that found in the βTC6 insulinoma cell line. Insulin protein and C-peptide expression was confirmed by immunohistochemistry staining. These inductive effects were restricted to c-kit(+) endoderm enriched EB-derived populations suggesting that Pdx1/Ngn3 functions after the specification of pancreatic endoderm. Although insulin secretion was stimulated by various insulin secretagogues, these cells had only limited glucose response. Microarray analysis was used to evaluate the expression of a broad spectrum of pancreatic endocrine cell-related genes as well as genes associated with glucose responses. Taken together, these findings demonstrate the utility of manipulating Pdx1 and Ngn3 expression in a stage-specific manner as an important new strategy for the efficient generation of functionally immature insulin-producing β-islet cells from ES cells.
为了定义调控胰腺β-胰岛细胞特化和分化的分子机制,我们研究了在从鼠胚胎干细胞(ES)细胞衍生的激活素诱导的内胚层中β-胰岛样细胞分化过程中上调 Pdx1 和 Ngn3 的作用。诱导过表达 Pdx1 导致胰岛素(Ins1 和 Ins2)和其他胰腺相关基因的显著上调。为了增强从胰腺芽到内分泌谱系形成的发育进展,我们与 Pdx1 一起诱导 Ngn3 的过表达。这种组合极大地增加了胰岛素 1 mRNA 表达的水平和最大时间,达到βTC6 胰岛素瘤细胞系的约 100%。通过免疫组织化学染色证实了胰岛素蛋白和 C 肽的表达。这些诱导作用仅限于 c-kit(+)内胚层富集的 EB 衍生群体,表明 Pdx1/Ngn3 在胰腺内胚层特化后起作用。尽管胰岛素分泌受到各种胰岛素分泌激动剂的刺激,但这些细胞的葡萄糖反应有限。微阵列分析用于评估广泛的胰腺内分泌细胞相关基因以及与葡萄糖反应相关的基因的表达。总之,这些发现表明以特定阶段特异性方式操纵 Pdx1 和 Ngn3 表达是从 ES 细胞有效产生功能不成熟的胰岛素产生β-胰岛细胞的重要新策略。