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在T辅助细胞亚群发育过程中赋予Th2特异性表达的白细胞介素-4启动子元件的鉴定。

Identification of IL-4 promoter elements conferring Th2-restricted expression during T helper cell subset development.

作者信息

Wenner C A, Szabo S J, Murphy K M

机构信息

Department of Pathology, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

J Immunol. 1997 Jan 15;158(2):765-73.

PMID:8992993
Abstract

Selective cytokine gene expression by T cell subsets underlies polarization of cellular and humoral immune responses. Our interest has been to define the molecular basis for restricted cytokine expression by Th1 and Th2 cells. IL-4 is selectively expressed by Th2 cells, providing a model for Th2-specific gene expression. To allow for promoter analysis during the process of Th1/Th2 differentiation within a normal cellular context, we have taken a transgenic approach. We generated a series of murine transgenic lines harboring both the DO11.10 alphabeta-TCR transgene and the luciferase gene driven by regions of the IL-4 promoter. The results identify proximal promoter regions that provide significantly Th2-restricted IL-4 gene expression. The IL-4 -741- to +60-bp region allows, on the average, 40-fold higher inducible reporter activity in Th2 cells than in Th1 cells. When trimerized, the region spanning -88 to -61 bp, containing a composite NF-AT/AP-1 site, also confers significant Th2-specific reporter activity. These results suggest that trans-acting factors binding this NF-AT/AP-1 composite site cooperate to allow substantial Th2-selective reporter expression. Finally, because reporter expression is low relative to endogenous IL-4 mRNA in activated Th2 cells, we suggest that additional control elements outside of the IL-4 promoter may be required to enhance overall IL-4 gene activity.

摘要

T细胞亚群的选择性细胞因子基因表达是细胞免疫和体液免疫反应极化的基础。我们感兴趣的是确定Th1和Th2细胞中细胞因子受限表达的分子基础。IL-4由Th2细胞选择性表达,为Th2特异性基因表达提供了一个模型。为了在正常细胞环境下的Th1/Th2分化过程中进行启动子分析,我们采用了转基因方法。我们构建了一系列携带DO11.10αβ-TCR转基因和由IL-4启动子区域驱动的荧光素酶基因的小鼠转基因品系。结果确定了近端启动子区域,这些区域能显著提供Th2受限的IL-4基因表达。IL-4的-741至+60 bp区域平均使Th2细胞中的诱导型报告基因活性比Th1细胞高40倍。当三聚化时,跨越-88至-61 bp的区域(包含一个复合NF-AT/AP-1位点)也赋予显著的Th2特异性报告基因活性。这些结果表明,结合该NF-AT/AP-1复合位点的反式作用因子协同作用,以实现大量的Th2选择性报告基因表达。最后,由于在活化的Th2细胞中报告基因表达相对于内源性IL-4 mRNA较低,我们认为可能需要IL-4启动子以外的其他控制元件来增强整体IL-4基因活性。

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