首页> 外文期刊>The Journal of biological chemistry >Identification of Glucose Transporter 4 Knockdown-dependent Transcriptional Activation Element on the Retinol Binding Protein 4 Gene Promoter and Requirement of the 20 S Proteasome Subunit for Transcriptional Activity
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Identification of Glucose Transporter 4 Knockdown-dependent Transcriptional Activation Element on the Retinol Binding Protein 4 Gene Promoter and Requirement of the 20 S Proteasome Subunit for Transcriptional Activity

机译:鉴定葡萄糖转运蛋白在视黄醇结合蛋白4基因启动子上抑制依赖性转录活化元素及其对转录活性的20 s蛋白酶体亚基的要求

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Retinol binding protein 4 (RBP4) is the transport protein that carries retinol in blood. RBP4 was described recently as a new adipokine that reduced insulin sensitivity. Mice lacking glucose transporter 4 (GLUT4) in adipocytes have enhanced Rbp4 gene expression; however, the molecular mechanism is unknown. We found a G4KA (GLUT4 knockdown-dependent transcriptional activation) element located ~1.3 kb upstream of the Rbp4 promoter. Mutations within the G4KA sequence significantly reduced expression of the Rbp4 promoter-reporter construct in G4KD-L1 (GLUT4 knockdown 3T3-L1) adipocyte cells. In a yeast one-hybrid screen of a G4KD-L1 cell cDNA library, using the G4KA element as bait, we identified subunits of the 20 S proteasome, PSMB1 and PSMA4, as binding partners. In chromatin immunoprecipitation assays, both subunits bound to the G4KA element; however, only PSMB1 was tightly bound in the GLUT4 knockdown model. PSMB1 RNA interference, but not PSMA4, significantly inhibited Rbp4 transcription. Nuclear transportation of PSMB1 was increased in G4KD-L1 cells. These results provide evidence for an exclusive proteasome subunit-related mechanism for transcriptional activation of RBP4 within a GLUT4 knockdown model.
机译:视黄醇结合蛋白4(RBP4)是携带视黄醇的转运蛋白。最近描述了RBP4作为降低胰岛素敏感性的新adipokine。缺乏葡萄糖转运蛋白4(Glut4)的小鼠具有增强的RBP4基因表达;但是,分子机制未知。我们发现RBP4启动子上游〜1.3 kB的G4KA(Glut4敲低依赖性转录激活)元素。 G4KA序列内的突变显着降低了G4KD-L1(Glut4敲低3T3-L1)adipocyte细胞中的RBP4启动子报告器构建体的表达。在G4KD-L1细胞cDNA文库的酵母单杂交筛下,使用G4KA元素作为诱饵,我们确定了20S蛋白酶体,PSMB1和PSMA4的亚基,如结合伴侣。在染色质免疫沉淀测定中,两个亚基与G4Ka元素结合;但是,只有PSMB1在Glut4敲低模型中紧密绑定。 PSMB1 RNA干扰,但不是PSMA4,显着抑制RBP4转录。 PSMB1的核运输在G4KD-L1细胞中增加。这些结果提供了一种专用蛋白酶体亚基相关机制的证据,用于在Glut4敲低模型中进行RBP4的转录激活。

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