Mosley Amber L, Corbett John A, Ozcan Sabire
Department of Molecular and Cellular Biochemistry, University of Kentucky, Lexington, Kentucky 40536, USA.
Mol Endocrinol. 2004 Sep;18(9):2279-90. doi: 10.1210/me.2003-0463. Epub 2004 May 27.
Regulation of insulin gene expression in response to increases in blood glucose levels is essential for maintaining normal glucose homeostasis; however, the exact mechanisms by which glucose stimulates insulin gene transcription are not known. We have shown previously that glucose stimulates insulin gene expression by causing the hyperacetylation of histone H4 at the insulin promoter. We demonstrate that the histone acetyltransferase p300 is recruited to the insulin promoter only at high concentrations of glucose via its interaction with the beta-cell-specific transcription factor Pdx-1. Disruption of the function of the endogenous Pdx-1 abolishes the recruitment of p300 to the insulin gene promoter at high concentrations of glucose and results in decreased histone H4 acetylation and insulin gene expression. Furthermore, we demonstrate that the glucose-dependent interaction of Pdx-1 with p300 is regulated by a phosphorylation event that changes the localization of Pdx-1. Based on these data, we conclude that hyperacetylation of histone H4 at the insulin gene promoter in response to high concentrations of glucose depends on the beta-cell-specific transcription factor Pdx-1, which is required for the recruitment of the histone acetyltransferase p300 to the insulin gene promoter.
胰岛素基因表达对血糖水平升高作出响应的调节对于维持正常的葡萄糖稳态至关重要;然而,葡萄糖刺激胰岛素基因转录的确切机制尚不清楚。我们之前已经表明,葡萄糖通过引起胰岛素启动子处组蛋白H4的超乙酰化来刺激胰岛素基因表达。我们证明,组蛋白乙酰转移酶p300仅在高浓度葡萄糖条件下通过与β细胞特异性转录因子Pdx-1相互作用被募集到胰岛素启动子。内源性Pdx-1功能的破坏消除了高浓度葡萄糖条件下p300向胰岛素基因启动子的募集,并导致组蛋白H4乙酰化和胰岛素基因表达降低。此外,我们证明Pdx-1与p300的葡萄糖依赖性相互作用受改变Pdx-1定位的磷酸化事件调节。基于这些数据,我们得出结论,高浓度葡萄糖条件下胰岛素基因启动子处组蛋白H4的超乙酰化依赖于β细胞特异性转录因子Pdx-1,而Pdx-1是组蛋白乙酰转移酶p300募集到胰岛素基因启动子所必需的。