Analysis of the antagonist effect of IFN-alpha on IFN-gamma-induced interferon consensus sequence binding protein messenger RNA in murine macrophages.

Journal of inflammation Pub Date : 1998-01-01
M J Fultz, S N Vogel
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Abstract

Interferon consensus sequence binding protein (ICSBP), a member of the interferon regulatory factor family of DNA binding proteins, was recently demonstrated in ICSBP knockout mice to play a critical role in hematopoiesis and virus susceptibility. In macrophages, ICSBP mRNA and protein are strongly induced by IFN-gamma, but only marginally by IFN-alpha/beta. When present concurrently, IFN-alpha/beta antagonizes IFN-gamma-induced ICSBP mRNA and protein synthesis. The unknown mechanism(s) underlying this antagonism may involve competitive interactions between these two IFN species or between molecules of their respective signaling cascades. The data presented demonstrate that IFN-alpha does not interfere with initiation of transmembrane signaling by IFN-gamma and that inhibition of ICSBP mRNA expression by IFN-alpha is independent of new protein synthesis. Nuclear proteins from IFN-gamma-treated or from IFN-alpha plus IFN-gamma-treated cells showed identical binding patterns in EMSAs using a palindromic interferon response element (pIRE) from the ICSBP promoter. These proteins were primarily reactive with antibodies directed against STAT1 alpha and, to a lesser extent, against STAT2 and ISGF3 gamma. However, when a second, upstream IRE-like sequence was evaluated by EMSA, a DNA binding pattern distinct from that seen following exposure to IFN-gamma alone was observed after prolonged stimulation with both IFN-alpha and IFN-gamma. These data suggest a possible novel mechanism for IFN-alpha-induced inhibition of IFN-gamma-induced gene expression.

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干扰素α对小鼠巨噬细胞干扰素γ诱导的干扰素一致序列结合蛋白信使RNA的拮抗作用分析。
干扰素一致序列结合蛋白(Interferon consensus sequence binding protein, ICSBP)是DNA结合蛋白干扰素调节因子家族的一员,最近在ICSBP敲除小鼠中被证明在造血和病毒易感性中起关键作用。在巨噬细胞中,ICSBP mRNA和蛋白被ifn - γ强烈诱导,但ifn - α / β仅轻微诱导。同时存在时,ifn - α / β可拮抗ifn - γ诱导的ICSBP mRNA和蛋白合成。这种拮抗作用的未知机制可能涉及这两种IFN物种之间或各自信号级联分子之间的竞争性相互作用。这些数据表明,ifn - α不会干扰ifn - γ启动的跨膜信号传导,ifn - α对ICSBP mRNA表达的抑制与新蛋白的合成无关。使用来自ICSBP启动子的回文干扰素反应元件(pIRE),来自ifn - γ处理或ifn - α + ifn - γ处理细胞的核蛋白在emsa中显示出相同的结合模式。这些蛋白主要与针对STAT1 α的抗体反应,并在较小程度上针对STAT2和ISGF3 γ。然而,当用EMSA评估第二个上游ire样序列时,在长时间同时使用ifn - α和ifn - γ刺激后,观察到与单独暴露于ifn - γ后不同的DNA结合模式。这些数据提示了ifn - α诱导的抑制ifn - γ诱导的基因表达的可能新机制。
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