首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Differential Regulation of Interleukin (IL)-12 p35 and p40 Gene Expression and Interferon (IFN)-γ–primed IL-12 Production by IFN Regulatory Factor 1
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Differential Regulation of Interleukin (IL)-12 p35 and p40 Gene Expression and Interferon (IFN)-γ–primed IL-12 Production by IFN Regulatory Factor 1

机译:干扰素调节因子1对白介素(IL)-12 p35和p40基因表达的差异调节和干扰素(IFN)-γ引发的IL-12产生。

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摘要

Interleukin (IL)-12 is a heterodimeric cytokine consisting of the p40 and p35 chains encoded on separate chromosomes. Coordinated expression of the two constituent genes is crucial for appropriate immune responses in timing, location, and magnitude. Interferon (IFN)-γ priming of IL-12 production by macrophages represents an important physiological process in vivo for escalated cellular response to microbial infections. We provide evidence that IFN regulatory factor (IRF)-1–deficient macrophages have a selective impairment in mRNA synthesis of IL-12 p35 but not the p40 gene, and a strong deficiency in the production of IL-12 p70 but not p40. We demonstrate that the levels of IL-12 p35 protein stimulated by IFN-γ and lipopolysaccharide (LPS) correspond to those of its mRNA, and that the nuclear factor κB signaling pathway is essential for the induction of IL-12 p35 transcription by LPS. IRF-1 plays a major role in the transcriptional activation of the IL-12 p35 gene, but not of the p40 gene, by physically interacting with an inverted IRF element within the IL-12 p35 promoter upon IFN-γ activation. Moreover, IRF-1–mediated transcriptional activation of the p35 promoter requires the cooperation of two adjacent Sp1 elements. Thus, IRF-1 acts as a critical component of IFN-γ signaling in the selective activation of IL-12 p35 transcription in synergy with LPS-mediated events.
机译:白介素(IL)-12是一种异二聚体细胞因子,由在独立染色体上编码的p40和p35链组成。两个组成基因的协调表达对于在时间,位置和大小上进行适当的免疫应答至关重要。巨噬细胞产生IL-12的干扰素(IFN)-γ引发代表体内重要的生理过程,该过程是细胞对微生物感染的反应逐步升级的过程。我们提供的证据表明,缺乏IFN调节因子(IRF)-1的巨噬细胞在IL-12 p35(而非p40基因)的mRNA合成中具有选择性损伤,而在IL-12 p70(而非p40)的产生中存在严重缺陷。我们证明,IFN-γ和脂多糖(LPS)刺激的IL-12 p35蛋白水平与其mRNA相对应,并且核因子κB信号通路对于LPS诱导IL-12 p35转录至关重要。 IRF-1通过与IL-12 p35启动子中的反向IRF元件在IFN-γ激活后发生物理相互作用,在IL-12 p35基因(而非p40基因)的转录激活中起主要作用。此外,IRF-1介导的p35启动子的转录激活需要两个相邻Sp1元件的配合。因此,IRF-1在与LPS介导的事件协同作用的IL-12 p35转录的选择性激活中,充当IFN-γ信号传导的关键组成部分。

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