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首页> 外文期刊>Molecular and Cellular Biology >Enhancer and promoter elements directing activation and glucocorticoid repression of the alpha 1-fetoprotein gene in hepatocytes.
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Enhancer and promoter elements directing activation and glucocorticoid repression of the alpha 1-fetoprotein gene in hepatocytes.

机译:增强子和启动子元件指导肝细胞中α1-甲胎蛋白基因的激活和糖皮质激素抑制。

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Mutations were introduced in 7 kilobases of 5'-flanking rat alpha 1-fetoprotein (AFP) genomic DNA, linked to the chloramphenicol acetyltransferase gene. AFP promoter activity and its repression by a glucocorticoid hormone were assessed by stable and transient expression assays. Stable transfection assays were more sensitive and accurate than transient expression assays in a Morris 7777 rat hepatoma recipient (Hepa7.6), selected for its strong AFP repression by dexamethasone. The segment of DNA encompassing a hepatocyte-constitutive chromatin DNase I-hypersensitive site at -3.7 kilobases and a liver developmental stage-specific site at -2.5 kilobases contains interacting enhancer elements sufficient for high AFP promoter activity in Hepa7.6 or HepG2 cells. Deletions and point mutations define an upstream promoter domain of AFP gene activation, operating with at least three distinct promoter-activating elements, PEI at -65 base pairs, PEII at -120 base pairs, and DE at -160 base pairs. PEI and PEII share homologies with albumin promoter sequences, PEII is a near-consensus nuclear factor I recognition sequence, and DE overlaps a glucocorticoid receptor recognition sequence. An element conferring glucocorticoid repression of AFP gene activity is located in the upstream AFP promoter domain. Receptor-binding assays indicate that this element is the glucocorticoid receptor recognition sequence which overlaps with promoter-activating element DE.
机译:在与氯霉素乙酰基转移酶基因连接的5'侧翼大鼠甲胎蛋白1(AFP)基因组DNA的7千碱基中引入了突变。通过稳定和瞬时表达测定法评估AFP启动子活性及其对糖皮质激素的抑制作用。在Morris 7777大鼠肝癌受者(Hepa7.6)中,稳定转染测定比瞬时表达测定更为灵敏和准确,而后者是由于地塞米松对AFP有较强的抑制作用而选择的。包含-3.7千碱基的肝细胞组成型染色质DNase I超敏感位点和-2.5千碱基的肝脏发育阶段特异性位点的DNA片段包含足以在Hepa7.6或HepG2细胞中具有高AFP启动子活性的相互作用增强子。缺失和点突变定义了AFP基因激活的上游启动子结构域,其与至少三个不同的启动子激活元件,-65个碱基对的PEI,-120个碱基对的PEII和-160个碱基对的DE一起工作。 PEI和PEII与白蛋白启动子序列具有同源性,PEII是接近共识的核因子I识别序列,DE与糖皮质激素受体识别序列重叠。赋予糖皮质激素抑制AFP基因活性的元件位于上游AFP启动子结构域。受体结合测定表明该元件是糖皮质激素受体识别序列,与启动子激活元件DE重叠。

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