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细胞因子诱导小鼠血清淀粉样蛋白A3基因,既需要C/EBP家族蛋白,也需要一种新的组成型核因子。

Induction of the mouse serum amyloid A3 gene by cytokines requires both C/EBP family proteins and a novel constitutive nuclear factor.

作者信息

Huang J H, Liao W S

机构信息

Department of Biochemistry and Molecular Biology, University of Texas M. D. Anderson Cancer Center, Houston 77030.

出版信息

Mol Cell Biol. 1994 Jul;14(7):4475-84. doi: 10.1128/mcb.14.7.4475-4484.1994.

Abstract

Serum amyloid A (SAA) is a major acute-phase protein synthesized and secreted mainly by the liver. In response to acute inflammation, its expression may be induced up to 1,000-fold, primarily as a result of a 200-fold increase in the rate of SAA gene transcription. We have previously demonstrated that a 350-bp promoter fragment from the mouse SAA3 gene was necessary and sufficient to confer liver-specific and cytokine-induced expression. Deletion studies identified a distal response element that is responsible for the cytokine response and has properties of an inducible transcriptional enhancer. In this study, we further analyzed the distal response element and showed that it consists of three functionally distinct elements: the A element constitutes a weak binding site for C/EBP family proteins, the B element also interacts with C/EBP family proteins but with a much higher binding affinity, and the C element interacts with a novel constitutive nuclear factor, SEF-1. Site-specific mutation studies revealed that all three elements were required for maximum promoter activity. C/EBP alpha, C/EBP beta, and C/EBP delta were capable of interacting with elements A and B. Under noninduced conditions, C/EBP alpha was the major binding factor; however, upon cytokine stimulation C/EBP beta- and C/EBP delta-binding activities were dramatically increased and became the predominant binding factors. Consistent with these binding studies were the cotransfection experiments in which C/EBP beta and C/EBP delta were shown to be potent transactivators for the SAA3 promoter. Moreover, the transactivation required an intact B element despite the presence of other functional C/EBP-binding sites. Interestingly, although element C did not interact with C/EBP directly, it was nevertheless required for maximum transactivation by C/EBP delta. Our studies thus demonstrate that both C/EBP family proteins and SEF-1 are required to transactivate the SAA3 gene.

摘要

血清淀粉样蛋白A(SAA)是一种主要由肝脏合成和分泌的急性时相蛋白。在急性炎症反应中,其表达可被诱导增加至1000倍,主要是由于SAA基因转录速率增加了200倍。我们之前已经证明,来自小鼠SAA3基因的一个350bp的启动子片段对于赋予肝脏特异性和细胞因子诱导的表达是必要且充分的。缺失研究确定了一个远端反应元件,该元件负责细胞因子反应并具有诱导型转录增强子的特性。在本研究中,我们进一步分析了该远端反应元件,结果表明它由三个功能不同的元件组成:A元件构成C/EBP家族蛋白的弱结合位点,B元件也与C/EBP家族蛋白相互作用,但结合亲和力高得多,C元件与一种新的组成型核因子SEF-1相互作用。位点特异性突变研究表明,所有这三个元件对于最大启动子活性都是必需的。C/EBPα、C/EBPβ和C/EBPδ能够与元件A和B相互作用。在未诱导的条件下,C/EBPα是主要的结合因子;然而,在细胞因子刺激后,C/EBPβ和C/EBPδ的结合活性显著增加并成为主要的结合因子。与这些结合研究一致的是共转染实验,其中显示C/EBPβ和C/EBPδ是SAA3启动子的有效反式激活因子。此外,尽管存在其他功能性C/EBP结合位点,但反式激活需要完整的B元件。有趣的是,尽管元件C不直接与C/EBP相互作用,但它对于C/EBPδ的最大反式激活是必需的。因此,我们的研究表明,C/EBP家族蛋白和SEF-1都需要来反式激活SAA3基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07de/358819/275028390836/molcellb00007-0154-a.jpg

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