Su Zao-Zhong, Sarkar Devanand, Emdad Luni, Barral Paola M, Fisher Paul B
Department of Urology, Herbert Irving Comprehensive Cancer Center, Columbia University Medical Center, College of Physicians and Surgeons, New York, New York 10032, USA.
J Cell Physiol. 2007 Nov;213(2):502-10. doi: 10.1002/jcp.21128.
Retinoic acid inducible gene-I (RIG-I) functions as the first line of defense against viral infection by sensing dsRNA and inducing type I interferon (IFN) production. The expression of RIG-I itself is induced by IFN-alpha/beta and dsRNA. To comprehend the molecular mechanism of expression regulation, we cloned the RIG-I promoter and analyzed its activity upon IFN-beta and dsRNA treatment. Under basal condition, RIG-I mRNA level and promoter activity were significantly higher in normal cells versus their tumor counterparts. In both normal and cancer cells, RIG-I expression was induced by IFN-beta and dsRNA. A single IRF-1 binding site in the proximal promoter functioned as a crucial regulator of basal, IFN-beta- and dsRNA-mediated induction of the RIG-I promoter. IFN-beta and dsRNA treatment increased IRF-1 binding to the RIG-I promoter. IRF-1 expression was also higher in normal cells than in cancer cells and it was induced by IFN-beta with similar kinetics as RIG-I. These results confirm that by controlling RIG-I expression, IRF-1 plays an essential role in anti-viral immunity. IRF-1 is a tumor suppressor and the expression profile of RIG-I together with its regulation by IRF-1 and the presence of a caspase-recruitment domain in RIG-I suggest that RIG-I might also possess tumor suppressor properties.
维甲酸诱导基因I(RIG-I)通过感知双链RNA并诱导I型干扰素(IFN)产生,发挥着抵御病毒感染的第一道防线作用。RIG-I自身的表达由IFN-α/β和双链RNA诱导。为了理解其表达调控的分子机制,我们克隆了RIG-I启动子,并分析了其在IFN-β和双链RNA处理后的活性。在基础条件下,正常细胞中RIG-I mRNA水平和启动子活性显著高于其肿瘤对应细胞。在正常细胞和癌细胞中,RIG-I表达均由IFN-β和双链RNA诱导。近端启动子中的单个IRF-1结合位点作为RIG-I启动子基础、IFN-β和双链RNA介导诱导的关键调节因子。IFN-β和双链RNA处理增加了IRF-1与RIG-I启动子的结合。IRF-1在正常细胞中的表达也高于癌细胞,并且它由IFN-β诱导,动力学与RIG-I相似。这些结果证实,通过控制RIG-I表达,IRF-1在抗病毒免疫中发挥着重要作用。IRF-1是一种肿瘤抑制因子,RIG-I的表达谱及其受IRF-1的调控以及RIG-I中存在半胱天冬酶招募结构域表明RIG-I可能也具有肿瘤抑制特性。