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对β干扰素耐药的细胞通过Stat1-IRF-1途径对γ干扰素产生反应。

Cells resistant to interferon-beta respond to interferon-gamma via the Stat1-IRF-1 pathway.

作者信息

Coccia E M, Marziali G, Stellacci E, Perrotti E, Ilari R, Orsatti R, Battistini A

机构信息

Laboratory of Virology, Istituto Superiore di Sanità, Rome, Italy.

出版信息

Virology. 1995 Aug 1;211(1):113-22. doi: 10.1006/viro.1995.1384.

Abstract

The mechanism responsible for the induction of the 2-5A synthetase gene by Interferon-gamma (IFN-gamma) (type II) was studied in Friend leukemia cells. It was previously shown that activation of 2-5A synthetase gene expression by IFN-gamma in the 3Cl8 cell, a clone resistant to IFN-alpha,beta (type I), correlates with the formation of two major complexes, designated Fg and Fc, that bind to the interferon-stimulated responsive element of the gene. Conversely, in a clone resistant to both types of IFNs (3 gamma R8), no induction of DNA-protein complexes or of 2-5A synthetase gene expression was detected. In the present report the Fg complex has been characterized as including the interferon regulatory factor 1 (IRF-1), whereas the Fc factor, present also in control cells, has been characterized as composed of IRF-2. Incubation of cell extracts with antibodies to IRF-1 abolishes the formation of the Fg complex, and antibodies to IRF-2 abolish the formation of the Fc complex. Moreover, in the 3Cl8 cell, IFN-gamma is able to induce in few minutes the formation of a complex between a DNA element identified as the IFN-gamma activation site (GAS), present on the IRF-1 gene promoter, and the STAT1 protein. These findings suggest that in cells resistant to type I IFN, IFN-gamma is able, through the activation of the STAT1 protein, to induce the expression of the IRF-1 factor which in turn seems to be sufficient to transactivate the 2-5A synthetase gene.

摘要

在Friend白血病细胞中研究了γ干扰素(IFN-γ,II型)诱导2-5A合成酶基因的机制。先前已表明,IFN-γ在3Cl8细胞(一种对α、β干扰素(I型)有抗性的克隆细胞)中激活2-5A合成酶基因表达,与形成两种主要复合物有关,这两种复合物分别命名为Fg和Fc,它们与该基因的干扰素刺激反应元件结合。相反,在对两种类型干扰素都有抗性的克隆细胞(3γR8)中,未检测到DNA-蛋白质复合物或2-5A合成酶基因表达的诱导。在本报告中,Fg复合物的特征是包含干扰素调节因子1(IRF-1),而Fc因子(也存在于对照细胞中)的特征是由IRF-2组成。用抗IRF-1抗体孵育细胞提取物可消除Fg复合物的形成,用抗IRF-2抗体孵育可消除Fc复合物的形成。此外,在3Cl8细胞中,IFN-γ能够在几分钟内诱导IRF-1基因启动子上一个被鉴定为IFN-γ激活位点(GAS)的DNA元件与STAT1蛋白之间形成复合物。这些发现表明,在对I型干扰素抗性的细胞中,IFN-γ能够通过激活STAT1蛋白诱导IRF-1因子的表达,而IRF-1因子反过来似乎足以反式激活2-5A合成酶基因。

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