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星形胶质细胞中γ干扰素对IV类II型反式激活因子启动子的调控

IFN-gamma regulation of the type IV class II transactivator promoter in astrocytes.

作者信息

Dong Y, Rohn W M, Benveniste E N

机构信息

Department of Cell Biology, University of Alabama, Birmingham 35294, USA.

出版信息

J Immunol. 1999 Apr 15;162(8):4731-9.

Abstract

The transcriptional activation of class II MHC genes requires the class II transactivator (CIITA) protein, a regulator that is essential for both constitutive and IFN-gamma-inducible class II MHC expression. The CIITA gene is controlled by multiple independent promoters; two promoters direct constitutive expression, while another, the type IV CIITA promoter, mediates IFN-gamma-induced expression. We investigated the molecular regulation of IFN-gamma-induced type IV CIITA promoter activity in astrocytes. IFN-gamma inducibility of the type IV CIITA promoter is dependent on three cis-acting elements contained within a 154-bp fragment of the promoter; the proximal IFN-gamma activation sequence (GAS) element, the E box, and the proximal IFN regulatory factor (IRF) element. Two IFN-gamma-activated transcription factors, STAT-1alpha and IRF-1, bind the proximal GAS and IRF elements, respectively. The E box binds upstream stimulating factor-1 (USF-1), a constitutively expressed transcription factor. Furthermore, STAT-1alpha binding to the proximal GAS element is dependent on the binding of USF-1 to the adjacent E box. Functionally, the proximal IRF element is essential for IFN-gamma induction of type IV CIITA promoter activity, while the proximal GAS and E box elements contribute to the IFN-gamma inducibility of this promoter. In astrocytes, TNF-alpha enhances IFN-gamma-induced class II MHC transcription. Our results demonstrate that TNF-alpha does not enhance IFN-gamma-induced transcriptional activation of the type IV CIITA promoter, indicating that the enhancing effect of TNF-alpha is mediated downstream of CIITA transcription. These results define the molecular basis of IFN-gamma activation of the type IV CIITA promoter in astrocytes.

摘要

II类主要组织相容性复合体(MHC)基因的转录激活需要II类反式激活因子(CIITA)蛋白,该调节因子对于组成型和IFN-γ诱导型II类MHC表达均至关重要。CIITA基因由多个独立启动子控制;两个启动子指导组成型表达,而另一个,即IV型CIITA启动子,介导IFN-γ诱导的表达。我们研究了星形胶质细胞中IFN-γ诱导的IV型CIITA启动子活性的分子调控。IV型CIITA启动子的IFN-γ诱导性取决于启动子154 bp片段中包含的三个顺式作用元件;近端IFN-γ激活序列(GAS)元件、E盒和近端干扰素调节因子(IRF)元件。两种IFN-γ激活的转录因子,STAT-1α和IRF-1,分别结合近端GAS和IRF元件。E盒结合上游刺激因子-1(USF-1),一种组成型表达的转录因子。此外,STAT-1α与近端GAS元件的结合取决于USF-1与相邻E盒的结合。在功能上,近端IRF元件对于IFN-γ诱导IV型CIITA启动子活性至关重要,而近端GAS和E盒元件有助于该启动子的IFN-γ诱导性。在星形胶质细胞中,TNF-α增强IFN-γ诱导的II类MHC转录。我们的结果表明,TNF-α不会增强IFN-γ诱导的IV型CIITA启动子的转录激活,这表明TNF-α的增强作用是在CIITA转录的下游介导的。这些结果确定了星形胶质细胞中IFN-γ激活IV型CIITA启动子的分子基础。

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