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首页> 外文期刊>Molecular and Cellular Biology >Preferential Transcription of Rabbit Aldh1a1 in the Cornea: Implication of Hypoxia-Related Pathways
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Preferential Transcription of Rabbit Aldh1a1 in the Cornea: Implication of Hypoxia-Related Pathways

机译:兔角膜兔Aldh1a1的优先转录:缺氧相关途径的含义。

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Here we examine the molecular basis for the known preferential expression of rabbit aldehyde dehydrogenase class 1 (ALDH1A1) in the cornea. The rabbit Aldh1a1 promoter-firefly luciferase reporter transgene (?3519 to +43) was expressed preferentially in corneal cells in transfection tests and in transgenic mice, with an expression pattern resembling that of rabbit Aldh1a1. The 5′ flanking region of the rabbit Aldh1a1 gene resembled that in the human gene (60.2%) more closely than that in the mouse (46%) or rat (51.5%) genes. We detected three xenobiotic response elements (XREs) and one E-box consensus sequence in the rabbit Aldh1a1 upstream region; these elements are prevalent in other highly expressed corneal genes and can mediate stimulation by dioxin and repression by CoCl2, which simulates hypoxia. The rabbit Aldh1a1 promoter was stimulated fourfold by dioxin in human hepatoma cells and repressed threefold by CoCl2 treatment in rabbit corneal stromal and epithelial cells. Cotransfection, mutagenesis, and gel retardation experiments implicated the hypoxia-inducible factor 3α/aryl hydrocarbon nuclear translocator heterodimer for Aldh1a1 promoter activation via the XREs and stimulated by retinoic acid protein 13 for promoter repression via the E-box. These experiments suggest that XREs, E-boxes, and PAS domain/basic helix-loop-helix transcription factors (bHLH-PAS) contribute to preferential rabbit Aldh1a1 promoter activity in the cornea, implicating hypoxia-related pathways.
机译:在这里,我们检查了兔角膜中1类兔醛脱氢酶(ALDH1A1)优先表达的分子基础。在转染试验和转基因小鼠中,兔 Aldh1a1 启动子-萤火虫荧光素酶报道基因转基因(?3519至+43)优先在角膜细胞中表达,其表达模式与兔 Aldh1a1 < / em>。兔子 Aldh1a1 基因的5'侧翼区域与人类基因(60.2%)的相似性比与小鼠(46%)或大鼠(51.5%)的相似。我们在兔子 Aldh1a1 上游区域检测到三个异种应答元件(XRE)和一个E-box共有序列。这些元素在其他高度表达的角膜基因中普遍存在,并可以介导二恶英刺激和CoCl 2 抑制,从而模拟缺氧。二恶英在人肝癌细胞中刺激兔 Aldh1a1 启动子四倍,而CoCl 2 处理在兔角膜基质和上皮细胞中抑制三倍。共转染,诱变和凝胶阻滞实验表明低氧诱导因子3α/芳烃核转运子异二聚体通过XRE激活 Aldh1a1 启动子,并被视黄酸蛋白13刺激,通过E-box抑制启动子。这些实验表明,XRE,E-box和PAS结构域/碱性螺旋-环-螺旋转录因子(bHLH-PAS)有助于角膜兔 Aldh1a1 启动子的优先活性,这暗示了低氧相关途径。

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