PPARδ启动子克隆及活性分析
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Cloning and Analyzing The Promoter of PPARδ
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    摘要:

    过氧化物酶体活化的受体 (peroxisome proliferator-activated receptors,PPARs) α、δ、γ是核受体超家族成员,它们是配体调节的转录因子,在脂类代谢过程中起非常重要的作用. PPARδ在骨骼肌中的表达分别要比PPARα和PPARγ高10倍和50倍,它的活化将导致骨骼肌细胞中有氧代谢相关的基因表达升高. 为研究PPARδ在骨骼肌中的表达调节,克隆了PPARδ基因5′侧翼区2 kb的DNA片段,体外实验证明该片段可以启动GFP表达. 然后通过不同的限制酶消化获得不同长度的PPARδ启动子,经启动子活性实验分析发现,转录起始位点5′侧翼区上游179 bp的片段就具有启动子活性. 通过在线工具对2 kb启动子上潜在的转录因子和结合位点进行分析,发现有4个肌细胞增强因子2 (myocyte enhancer factor 2,MEF2)潜在的结合位点,在MEF2A共转染实验中,发现随着MEF2A浓度升高,2 kb的PPARδ启动子转录活性增强,表明MEF2A确实能提高PPARδ启动子活性. 上述结果为研究PPARδ在肌肉中的表达调节和功能提供了依据.

    Abstract:

    Peroxisome proliferator-activated receptors (PPARs) are a family of nuclear hormone receptors belonging to the steroid receptor superfamily. Three PPAR isoforms, PPARα, PPARδ (also known as PPARβ) and PPARγ have been found in the mouse. They can activate expression of many genes, including those involved in lipidmetabolism. PPARδ is ubiquitously expressed, but the level of expression differs markedly between different cell types. PPARδ is expressed in skeletal muscle at 10- and 50-fold higher levels compared with PPARα and PPARγ, respectively. A role for PPARδ in skeletal muscle is to increase the genes expression with relation to oxidative metabolism. In order to determine the molecular mechanisms governing PPARδ gene expression in muscle, a 2 kb 5′ flanking region was cloned and analyzed. The DNA fragment is able to transcribe GFP in COS7 cells. Dual luciferase assay is used to quantify promoter activity. Deletion analysis of the 2 kb PPARδ promoter fragment in COS7 and NIH 3T3 cells shows that the proximal promoter sequence, nt -197 to +120, confers basal transcriptional activity of the mouse PPARδ gene. Computational analysis of putative cis-acting elements located within the ~2.0 kb mouse PPARδ 5′-flanking sequence was performed using the TRANSFAC database and MatInspector software and 4 potential MEF2A binding sites were found. And there is a potential binding site sharing 100% identity with positive element of MEF2A in the proximal promoter (nt -261). Co-transfection experiments of the PPARδ promoter reporter and pMEF2A expression plasmid (pMEF2A) showed that MEF2A significantly enhanced transcription activity of PPARδ promoter in NIH 3T3. Moreover, the enhancive effect depended on the concentration of plasmid pMEF2A transfected into cells. The results suggested that MEF2A may enhance transcription activity of the PPAR promoter in muscle cells.

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何成强,李丛丛,吴艳红,安利国,李云龙. PPARδ启动子克隆及活性分析[J].生物化学与生物物理进展,2007,34(4):412-417

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  • 收稿日期:2006-10-19
  • 最后修改日期:2006-12-22
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  • 在线发布日期: 2007-03-27
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