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首页> 外文期刊>Molecular and Cellular Biology >Purification and cloning of interferon-stimulated gene factor 2 (ISGF2): ISGF2 (IRF-1) can bind to the promoters of both beta interferon- and interferon-stimulated genes but is not a primary transcriptional activator of either.
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Purification and cloning of interferon-stimulated gene factor 2 (ISGF2): ISGF2 (IRF-1) can bind to the promoters of both beta interferon- and interferon-stimulated genes but is not a primary transcriptional activator of either.

机译:干扰素刺激的基因因子2(ISGF2)的纯化和克隆:ISGF2(IRF-1)可以与β干扰素和干扰素刺激的基因的启动子结合,但不是两者的主要转录激活因子。

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摘要

Interferon-stimulated gene factor 2 (ISGF2) was purified from HeLa cells treated with alpha interferon. The factor, a single polypeptide of 56 kilodaltons (kDa), bound both to the central 9 base pairs of the 15-base-pair interferon-stimulated response element (ISRE) that is required for transcriptional activation of interferon-stimulated genes and to the PRD-I regulatory element of the beta interferon gene. ISGF2 was a phosphoprotein, and dephosphorylation in vitro reduced its DNA-binding activity. However, conditions that changed the amount of ISGF2 did not change the phosphorylated isoforms in vivo. ISGF2 in unstimulated cells existed in trace amounts and was induced by both alpha interferon and gamma interferon as well as by virus infection. Plasmid-bearing Escherichia coli clones encoding ISGF2 were selected with antibody against purified ISGF2. Sequence analysis revealed that the ISGF2 protein was the same as that encoded by the cDNA clone IRF-1, which has been claimed to activate transcription of interferon genes. We show that transcription of the ISGF2 gene was induced by alpha interferon, gamma interferon, and double-stranded RNA. However, ISGF2 was neither necessary nor sufficient for induced transcription of the beta interferon gene, while the factor NF kappa B was clearly involved.
机译:从用α干扰素处理的HeLa细胞中纯化干扰素刺激的基因因子2(ISGF2)。该因子是一条56千道尔顿(kDa)的多肽,既与15碱基对干扰素刺激的反应元件(ISRE)的中央9个碱基对结合,后者是干扰素刺激基因转录激活所需的。 β干扰素基因的PRD-1调控元件。 ISGF2是一种磷蛋白,体外去磷酸化降低了其DNA结合活性。但是,改变ISGF2量的条件并没有改变体内的磷酸化同工型。未刺激细胞中的ISGF2含量极高,并被α干扰素和γ干扰素以及病毒感染诱导。用针对纯化的ISGF2的抗体选择编码ISGF2的带有质粒的大肠杆菌克隆。序列分析显示,ISGF2蛋白与cDNA克隆IRF-1编码的蛋白相同,后者据称可激活干扰素基因的转录。我们显示,ISGF2基因的转录是由α干扰素,γ干扰素和双链RNA诱导的。然而,ISGF2对于诱导β干扰素基因的转录既不是必需的也不是足够的,而因子NFκB显然参与其中。

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