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首页> 外文期刊>Molecular and Cellular Biology >Regulation of mouse serum amyloid A gene expression in transfected hepatoma cells.
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Regulation of mouse serum amyloid A gene expression in transfected hepatoma cells.

机译:小鼠血清淀粉样蛋白A基因在转染肝癌细胞中的表达调控。

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Expression of mouse serum amyloid A (SAA1, -2, and -3) mRNAs can be induced up to 1,000-fold in the liver in response to acute inflammation. This large increase is primarily the result of a 200-fold increase in the rates of SAA gene transcription. To analyze the cis-acting regulatory element(s) responsible for regulating transcription, we fused 306 base pairs of the mouse SAA3 promoter to a reporter gene, the chloramphenicol acetyltransferase (CAT) gene, and transfected this chimeric DNA into cultured cells. In transient expression assays, this 5' sequence was sufficient to confer cell-specific expression: CAT activity was readily detectable when the construct was transfected into liver-derived cells but was not detectable in nonliver cells. Furthermore, when liver cells transfected with this construct were treated with conditioned media prepared from activated mixed lymphocyte cultures or with recombinant interleukin-1, a 10- to 15-fold increase in CAT activity was detected. Deletion analyses showed two regions of interest: a proximal region that enhanced CAT expression in a cell-specific manner and a distal region that conferred responsiveness to both conditioned media and recombinant interleukin-1. This distal responsive element had properties of an inducible transcriptional enhancer, and deletion of the proximal cell-specific region rendered the distal element responsive to stimulation by conditioned media in nonliver cells.
机译:响应急性炎症,可以在肝脏中诱导小鼠血清淀粉样蛋白A(SAA1,-2和-3)mRNA的表达多达1,000倍。大量增加主要是SAA基因转录速率增加200倍的结果。为了分析负责调节转录的顺式作用调控元件,我们将小鼠SAA3启动子的306个碱基对与一个报告基因氯霉素乙酰转移酶(CAT)基因融合,并将该嵌合DNA转染到培养的细胞中。在瞬时表达测定中,该5'序列足以赋予细胞特异性表达:当将构建体转染至肝来源的细胞中时,CAT活性很容易检测到,但在非肝细胞中则检测不到。此外,当用由活化的混合淋巴细胞培养物制备的条件培养基或重组白介素-1处理用该构建体转染的肝细胞时,检测到CAT活性增加了10到15倍。缺失分析显示了两个感兴趣的区域:以细胞特异性方式增强CAT表达的近端区域和赋予对条件培养基和重组白介素1响应的远端区域。该远端响应元件具有可诱导的转录增强子的特性,近端细胞特异性区域的缺失使远端元件响应非肝脏细胞中条件培养基的刺激。

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