首页> 美国卫生研究院文献>Journal of Virology >Type III Interferon (IFN) Induces a Type I IFN-Like Response in a Restricted Subset of Cells through Signaling Pathways Involving both the Jak-STAT Pathway and the Mitogen-Activated Protein Kinases
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Type III Interferon (IFN) Induces a Type I IFN-Like Response in a Restricted Subset of Cells through Signaling Pathways Involving both the Jak-STAT Pathway and the Mitogen-Activated Protein Kinases

机译:III型干扰素(IFN)通过涉及Jak-STAT途径和丝裂原激活的蛋白激酶的信号传导途径在受限细胞亚群中诱导I型类似IFN的应答。

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摘要

Type III interferon (IFN) is a novel member of the interferon family. Type III IFN utilizes a receptor complex different from that of type I IFN, but both types of IFN induce STAT1, STAT2, and STAT3 activation. Here we describe a detailed comparison of signal transduction initiated by type I and type III IFN. Gene expression array analysis showed that IFN types I and III induced a similar subset of genes. In particular, no genes were induced uniquely by type III IFN. Next, we used chromatin immunoprecipitation (ChIP) analysis to investigate the promoter activation by types I and III IFN. The ChIP assays demonstrated that stimulation of cells with both type I and type III IFN resulted in the recruitment of ISGF3 transcription factor components to the promoter region of responsive genes and in an increase of polymerase II loading and histone acetylation. Whereas IFN type I signaling was observed for a broad spectrum of cell lines, type III IFN signaling was more restricted. The lack of IFN type III signaling was correlated with a low expression of the IL28Ra component of the IFN type III receptor, and IL28Ra overexpression was sufficient to restore IFN type III signaling. We also tested the activation of mitogen-activated protein (MAP) kinases by type III IFN and found that type III IFN relies strongly upon both p38 and JNK MAP kinases for gene induction.
机译:III型干扰素(IFN)是干扰素家族的新成员。 III型IFN利用的受体复合物不同于I型IFN,但是两种类型的IFN均可诱导STAT1,STAT2和STAT3激活。在这里,我们描述了由I型和III型IFN引发的信号转导的详细比较。基因表达阵列分析表明,I型和III型IFN诱导了相似的基因子集。特别地,没有基因被III型IFN独特地诱导。接下来,我们使用染色质免疫沉淀(ChIP)分析来研究I型和III型IFN启动子的激活。 ChIP分析表明,用I型和III型IFN刺激细胞会导致ISGF3转录因子组分募集到响应基因的启动子区域,并增加聚合酶II负荷和组蛋白乙酰化。尽管在广泛的细胞系中观察到了I型IFN信号传导,但III型IFN信号传导受到了更大的限制。缺乏III型干扰素信号传导与III型干扰素受体的IL28Ra成分的低表达有关,IL28Ra的过表达足以恢复III型干扰素信号。我们还测试了III型IFN对丝裂原活化蛋白(MAP)激酶的激活,发现III型IFN强烈依赖于p38和JNK MAP激酶进行基因诱导。

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