Department of Molecular Physiology and Biophysics, Vanderbilt University , Nashville, Tennessee.
Department of Veterans Affairs, Tennessee Valley Health Authority, Vanderbilt University , Nashville, Tennessee.
Am J Physiol Endocrinol Metab. 2018 Apr 1;314(4):E308-E321. doi: 10.1152/ajpendo.00260.2017. Epub 2017 Dec 12.
The transcription factors pancreatic and duodenal homeobox 1 (Pdx1) and onecut1 (Oc1) are coexpressed in multipotent pancreatic progenitors (MPCs), but their expression patterns diverge in hormone-expressing cells, with Oc1 expression being extinguished in the endocrine lineage and Pdx1 being maintained at high levels in β-cells. We previously demonstrated that cooperative function of these two factors in MPCs is necessary for proper specification and differentiation of pancreatic endocrine cells. In those studies, we observed a persistent decrease in expression of the β-cell maturity factor MafA. We therefore hypothesized that Pdx1 and Oc1 cooperativity in MPCs impacts postnatal β-cell maturation and function. Here our model of Pdx1-Oc1 double heterozygosity was used to investigate the impact of haploinsufficiency for both of these factors on postnatal β-cell maturation, function, and adaptability. Examining mice at postnatal day (P) 14, we observed alterations in pancreatic insulin content in both Pdx1 heterozygotes and double heterozygotes. Gene expression analysis at this age revealed significantly decreased expression of many genes important for glucose-stimulated insulin secretion (e.g., Glut2, Pcsk1/2, Abcc8) exclusively in double heterozygotes. Analysis of P14 islets revealed an increase in the number of mixed islets in double heterozygotes. We predicted that double-heterozygous β-cells would have an impaired ability to respond to stress. Indeed, we observed that β-cell proliferation fails to increase in double heterozygotes in response to either high-fat diet or placental lactogen. We thus report here the importance of cooperation between regulatory factors early in development for postnatal islet maturation and adaptability.
转录因子胰腺十二指肠同源盒 1(Pdx1)和单cut1(Oc1)在多能胰腺祖细胞(MPC)中共同表达,但在激素表达细胞中的表达模式不同,Oc1 在内分泌谱系中表达消失,而 Pdx1 在β细胞中保持高水平表达。我们之前证明了这两个因素在 MPC 中的协同作用对于胰腺内分泌细胞的正确特化和分化是必要的。在这些研究中,我们观察到β细胞成熟因子 MafA 的表达持续下降。因此,我们假设 MPC 中 Pdx1 和 Oc1 的协同作用会影响出生后β细胞的成熟和功能。在这里,我们使用 Pdx1-Oc1 双杂合模型来研究这两个因素的单倍不足对出生后β细胞成熟、功能和适应性的影响。在出生后第 14 天(P)检查小鼠时,我们观察到 Pdx1 杂合子和双杂合子的胰腺胰岛素含量均发生改变。在这个年龄的基因表达分析显示,许多对葡萄糖刺激胰岛素分泌很重要的基因(例如,Glut2、Pcsk1/2、Abcc8)的表达显著降低,仅在双杂合子中。对 P14 胰岛的分析显示,双杂合子中混合胰岛的数量增加。我们预测双杂合β细胞对应激的反应能力会受损。事实上,我们观察到,双杂合子β细胞在高糖饮食或胎盘催乳素的刺激下,增殖能力没有增加。因此,我们在这里报告了发育早期调节因子之间的合作对于出生后胰岛成熟和适应性的重要性。