Stem Cell Center, Lund University, Sweden.
Diabetes. 2013 Aug;62(8):2834-42. doi: 10.2337/db12-1464. Epub 2013 Apr 22.
Precise regulation of β-cell function is crucial for maintaining blood glucose homeostasis. Pax6 is an essential regulator of β-cell-specific factors like insulin and Glut2. Studies in the developing eye suggest that Pax6 interacts with Mitf to regulate pigment cell differentiation. Here, we show that Mitf, like Pax6, is expressed in all pancreatic endocrine cells during mouse postnatal development and in the adult islet. A Mitf loss-of-function mutation results in improved glucose tolerance and enhanced insulin secretion but no increase in β-cell mass in adult mice. Mutant β-cells secrete more insulin in response to glucose than wild-type cells, suggesting that Mitf is involved in regulating β-cell function. In fact, the transcription of genes critical for maintaining glucose homeostasis (insulin and Glut2) and β-cell formation and function (Pax4 and Pax6) is significantly upregulated in Mitf mutant islets. The increased Pax6 expression may cause the improved β-cell function observed in Mitf mutant animals, as it activates insulin and Glut2 transcription. Chromatin immunoprecipitation analysis shows that Mitf binds to Pax4 and Pax6 regulatory regions, suggesting that Mitf represses their transcription in wild-type β-cells. We demonstrate that Mitf directly regulates Pax6 transcription and controls β-cell function.
精确调节β细胞功能对于维持血糖稳态至关重要。Pax6 是胰岛素和 Glut2 等β细胞特异性因子的重要调节因子。在发育中的眼睛研究中表明,Pax6 与 Mitf 相互作用以调节色素细胞分化。在这里,我们显示 Mitf 与 Pax6 一样,在小鼠出生后发育期间在所有胰腺内分泌细胞中表达,并在成年胰岛中表达。Mitf 功能丧失突变导致葡萄糖耐量改善和胰岛素分泌增强,但成年小鼠的β细胞质量没有增加。突变β细胞对葡萄糖的反应分泌更多的胰岛素,表明 Mitf 参与调节β细胞功能。事实上,维持葡萄糖稳态的关键基因(胰岛素和 Glut2)以及β细胞形成和功能(Pax4 和 Pax6)的转录在 Mitf 突变体胰岛中显著上调。增加的 Pax6 表达可能导致在 Mitf 突变体动物中观察到的改善的β细胞功能,因为它激活胰岛素和 Glut2 转录。染色质免疫沉淀分析表明,Mitf 结合到 Pax4 和 Pax6 调节区域,表明 Mitf 在野生型β细胞中抑制它们的转录。我们证明 Mitf 直接调节 Pax6 转录并控制β细胞功能。