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胰腺转录因子Pdx-1对胰岛素基因的调控机制:应用前体mRNA分析和染色质免疫沉淀评估功能性转录复合物的形成

Mechanism of insulin gene regulation by the pancreatic transcription factor Pdx-1: application of pre-mRNA analysis and chromatin immunoprecipitation to assess formation of functional transcriptional complexes.

作者信息

Iype Tessy, Francis Joshua, Garmey James C, Schisler Jonathan C, Nesher Rafael, Weir Gordon C, Becker Thomas C, Newgard Christopher B, Griffen Steven C, Mirmira Raghavendra G

机构信息

Department of Internal Medicine and the Diabetes Center, University of Virginia, Charlottesville, Virginia 22908, USA.

出版信息

J Biol Chem. 2005 Apr 29;280(17):16798-807. doi: 10.1074/jbc.M414381200. Epub 2005 Mar 2.

Abstract

The homeodomain factor Pdx-1 regulates an array of genes in the developing and mature pancreas, but whether regulation of each specific gene occurs by a direct mechanism (binding to promoter elements and activating basal transcriptional machinery) or an indirect mechanism (via regulation of other genes) is unknown. To determine the mechanism underlying regulation of the insulin gene by Pdx-1, we performed a kinetic analysis of insulin transcription following adenovirus-mediated delivery of a small interfering RNA specific for pdx-1 into insulinoma cells and pancreatic islets to diminish endogenous Pdx-1 protein. insulin transcription was assessed by measuring both a long half-life insulin mRNA (mature mRNA) and a short half-life insulin pre-mRNA species by real-time reverse transcriptase-PCR. Following progressive knock-down of Pdx-1 levels, we observed coordinate decreases in pre-mRNA levels (to about 40% of normal levels at 72 h). In contrast, mature mRNA levels showed strikingly smaller and delayed declines, suggesting that the longer half-life of this species underestimates the contribution of Pdx-1 to insulin transcription. Chromatin immunoprecipitation assays revealed that the decrease in insulin transcription was associated with decreases in the occupancies of Pdx-1 and p300 at the proximal insulin promoter. Although there was no corresponding change in the recruitment of RNA polymerase II to the proximal promoter, its recruitment to the insulin coding region was significantly reduced. Our results suggest that Pdx-1 directly regulates insulin transcription through formation of a complex with transcriptional coactivators on the proximal insulin promoter. This complex leads to enhancement of elongation by the basal transcriptional machinery.

摘要

同源结构域因子Pdx-1可调控发育中和成熟胰腺中的一系列基因,但对于每个特定基因的调控是通过直接机制(与启动子元件结合并激活基础转录机制)还是间接机制(通过调控其他基因)尚不清楚。为了确定Pdx-1调控胰岛素基因的机制,我们在将针对pdx-1的小干扰RNA通过腺病毒介导递送至胰岛素瘤细胞和胰岛以减少内源性Pdx-1蛋白后,对胰岛素转录进行了动力学分析。通过实时逆转录聚合酶链反应测量长半衰期胰岛素mRNA(成熟mRNA)和短半衰期胰岛素前体mRNA种类来评估胰岛素转录。随着Pdx-1水平的逐步降低,我们观察到前体mRNA水平协同下降(在72小时时降至正常水平的约40%)。相比之下,成熟mRNA水平的下降幅度明显较小且延迟,这表明该种类较长的半衰期低估了Pdx-1对胰岛素转录的贡献。染色质免疫沉淀分析表明,胰岛素转录的降低与Pdx-1和p300在胰岛素近端启动子上的占据率降低有关。尽管RNA聚合酶II募集到近端启动子上没有相应变化,但其募集到胰岛素编码区的水平显著降低。我们的结果表明,Pdx-1通过在胰岛素近端启动子上与转录共激活因子形成复合物直接调控胰岛素转录。该复合物导致基础转录机制增强延伸。

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