首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Transcription Factor Neural Retina Leucine Zipper (NRL) Controls Photoreceptor-specific Expression of Myocyte Enhancer Factor Mef2c from an Alternative Promoter
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The Transcription Factor Neural Retina Leucine Zipper (NRL) Controls Photoreceptor-specific Expression of Myocyte Enhancer Factor Mef2c from an Alternative Promoter

机译:转录因子神经视网膜亮氨酸拉链(NRL)控制来自替代启动子的肌细胞增强因子Mef2c的感光受体特异性表达。

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摘要

Neural retina leucine zipper (NRL) is an essential transcription factor for cell fate specification and functional maintenance of rod photoreceptors in the mammalian retina. In the Nrl−/− mouse retina, photoreceptor precursors fail to produce rods and generate functional cone photoreceptors that predominantly express S-opsin. Previous global expression analysis using microarrays revealed dramatically reduced expression of myocyte enhancer factor Mef2c in the adult Nrl−/− retina. We undertook this study to examine the biological relevance of Mef2c expression in retinal rod photoreceptors. Bioinformatics analysis, rapid analysis of cDNA ends (5′-RACE), and reverse transcription coupled with qPCR using splice site-specific oligonucleotides suggested that Mef2c is expressed in the mature retina from an alternative promoter. Chromatin immunoprecipitation (ChIP) studies showed the association of active RNA polymerase II and acetylated histone H3 just upstream of Mef2c exon 4, providing additional evidence for the utilization of an alternative promoter in the retina. In concordance, we observed the binding of NRL to a putative NRL-response element (NRE) at this location by ChIP-seq and electrophoretic mobility shift assays. NRL also activated the Mef2c alternative promoter in vitro and in vivo. Notably, MEF2C could support Rhodopsin promoter activity in rod photoreceptors. We conclude that Mef2c expression from an alternative promoter in the retina is regulated by NRL. Our studies also implicate MEF2C as a transcriptional regulator of homeostasis in rod photoreceptor cells.
机译:神经视网膜亮氨酸拉链(NRL)是细胞命运规范和杆状感光细胞在哺乳动物视网膜中功能维持的重要转录因子。在Nrl -/-小鼠视网膜中,光感受器前体不能产生视杆,而不能产生主要表达S-视蛋白的功能性视锥细胞。先前使用微阵列的全局表达分析表明,成年Nrl -/-视网膜中心肌细胞增强因子Mef2c的表达显着降低。我们进行了这项研究,以检查视网膜棒感光细胞中Mef2c表达的生物学相关性。生物信息学分析,cDNA末端的快速分析(5'-RACE),以及使用剪接位点特异性寡核苷酸的qPCR与反转录偶联表明,Mef2c在成熟的视网膜中由其他启动子表达。染色质免疫沉淀(ChIP)研究表明,就在Mef2c外显子4上游,活性RNA聚合酶II与乙酰化组蛋白H3缔合,为视网膜中替代启动子的利用提供了更多证据。一致地,我们通过ChIP-seq和电泳迁移率迁移测定法观察了NRL在该位置上与假定的NRL反应元件(NRE)的结合。 NRL还可以在体内和体外激活Mef2c替代启动子。值得注意的是,MEF2C可以在视杆感光器中支持视紫红质启动子活性。我们得出的结论是,视网膜中其他启动子的Mef2c表达受NRL调节。我们的研究还暗示MEF2C作为杆感光细胞内稳态的转录调节因子。

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