Di Domizio Jérémy, Blum Ariane, Gallagher-Gambarelli Maighread, Molens Jean-Paul, Chaperot Laurence, Plumas Joël
Université Joseph Fourier, Grenoble, France.
Blood. 2009 Aug 27;114(9):1794-802. doi: 10.1182/blood-2009-04-216770. Epub 2009 Jun 24.
On recognition of influenza virus (Flu) by TLR7, plasmacytoid dendritic cells (pDCs) produce type I IFN in significant amounts. Synthetic TLR7 ligands induce the maturation of pDCs, as evidenced by the expression of costimulatory molecules and the production of proinflammatory cytokines; however, they induce only low-level production of IFN-alpha. To dissect the TLR7 signaling in pDCs and how these different profiles are induced, we studied the effects of 2 TLR7 ligands (Flu and CL097) on the activation of blood-isolated pDCs and the human GEN2.2 pDC cell line. Type I IFN production by pDCs correlates with differential interferon regulatory factor 7 (IRF7) translocation into the nucleus induced by the 2 TLR7 ligands. Surprisingly, with both activators we nevertheless observed the rapid expression of the IFN-inducible genes mxa, cxcl10, and trail within 4 hours of stimulation. This expression, controlled by STAT1 phosphorylation, was independent of type I IFN. STAT1 activation was found to be strictly dependent on the PI3K-p38MAPK pathway, showing a new signaling pathway leading to rapid expression of IFN-inducible genes after TLR7 triggering. Thus, pDCs, through this unusual TLR7 signaling, have the capacity to promptly respond to viral infection during the early phases of the innate immune response.
当浆细胞样树突状细胞(pDCs)通过Toll样受体7(TLR7)识别流感病毒(Flu)时,会大量产生I型干扰素。合成的TLR7配体可诱导pDCs成熟,共刺激分子的表达和促炎细胞因子的产生可证明这一点;然而,它们仅诱导低水平的α干扰素产生。为了剖析pDCs中的TLR7信号传导以及如何诱导这些不同的反应模式,我们研究了两种TLR7配体(Flu和CL097)对分离自血液的pDCs和人GEN2.2 pDC细胞系激活的影响。pDCs产生的I型干扰素与两种TLR7配体诱导的干扰素调节因子7(IRF7)向细胞核的差异性易位相关。令人惊讶的是,使用这两种激活剂时,我们在刺激后4小时内仍观察到干扰素诱导基因mxa、cxcl10和肿瘤坏死因子相关凋亡诱导配体(TRAIL)的快速表达。这种由信号转导和转录激活因子1(STAT1)磷酸化控制的表达独立于I型干扰素。发现STAT1激活严格依赖于磷脂酰肌醇-3激酶(PI3K)-p38丝裂原活化蛋白激酶(MAPK)途径,这显示了一种新的信号通路,导致TLR7触发后干扰素诱导基因的快速表达。因此,pDCs通过这种不寻常的TLR7信号传导,有能力在先天免疫反应的早期阶段对病毒感染迅速做出反应。