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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >HPV18 Persistence Impairs Basal and DNA Ligand-Mediated IFN-beta and IFN-lambda(1) Production through Transcriptional Repression of Multiple Downstream Effectors of Pattern Recognition Receptor Signaling
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HPV18 Persistence Impairs Basal and DNA Ligand-Mediated IFN-beta and IFN-lambda(1) Production through Transcriptional Repression of Multiple Downstream Effectors of Pattern Recognition Receptor Signaling

机译:HPV18持久性损害基底和DNA配体介导的IFN-β和IFN-Lambda(1)通过模式识别受体信号传导的多个下游效应的转录抑制产生

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Although it is clear that high-risk human papillomaviruses (HPVs) can selectively infect keratinocytes and persist in the host, it still remains to be unequivocally determined whether they can escape antiviral innate immunity by interfering with pattern recognition receptor (PRR) signaling. In this study, we have assessed the innate immune response in monolayer and organotypic raft cultures of NIKS cells harboring multiple copies of episomal HPV18 (NIKSmcHPV18), which fully recapitulates the persistent state of infection. We show for the first time, to our knowledge, that NIKSmcHPV18, as well as HeLa cells (a cervical carcinoma-derived cell line harboring integrated HPV18 DNA), display marked downregulation of several PRRs, as well as other PRR downstream effectors, such as the adaptor protein stimulator of IFN genes and the transcription factors IRF1 and 7. Importantly, we provide evidence that downregulation of stimulator of IFN genes, cyclic GMP-AMP synthase, and retinoic acid-inducible gene I mRNA levels occurs at the transcriptional level through a novel epigenetic silencing mechanism, as documented by the accumulation of repressive heterochromatin markers seen at the promoter region of these genes. Furthermore, stimulation of NIKSmcHPV18 cells with salmon sperm DNA or poly(deoxyadenylic-deoxythymidylic) acid, two potent inducers of PRR signaling, only partially restored PRR protein expression. Accordingly, the production of IFN-beta and IFN-lambda(1) was significantly reduced in comparison with the parental NIKS cells, indicating that HPV18 exerts its immunosuppressive activity through downregulation of PRR signaling. Altogether, our findings indicate that high-risk human papillomaviruses have evolved broad-spectrum mechanisms that allow simultaneous depletion of multiple effectors of the innate immunity network, thereby creating an unreactive cellular milieu suitable for viral persistence.
机译:虽然很明显,高风险的人乳头瘤病毒(HPV)可以选择性地感染角质形成细胞并持续在宿主中,但仍然仍然可以通过干扰模式识别受体(PRR)信号传导来逃避抗病毒先天免疫。在这项研究中,我们评估了含有多种重组HPV18(NiksmChPV18)的耐尼克斯细胞单层细胞的单层和有机型筏培养的先天免疫反应,这完全重新承载了持续的感染状态。我们示出了用于第一次,就我们所知,这NIKSmcHPV18,以及HeLa细胞(子宫颈癌衍生的细胞系含有整合HPV18 DNA),显示标记数的PRR的下调,以及其它PRR下游效应,如IFN基因的衔接蛋白刺激和转录因子IRF1和7重要的是,我们提供的证据表明,干扰素基因,环GMP-AMP合成酶,和维甲酸诱导基因I mRNA水平的刺激下调发生在通过转录水平新颖的表观遗传沉默机制,如在这些基因的启动子区中所见的压制异料素标志物的积累记录。此外,用鲑鱼精子DNA或聚(脱氧酰基 - 脱氧)酸,两种PRR信号传导的有效诱导剂刺激Niksmchpv18细胞,仅部分恢复的PRR蛋白表达。因此,与亲本NIKS细胞相比,IFN-β和IFN-Lambda(1)的产生显着降低,表明HPV18通过PRR信号传导的下调施加免疫抑制活性。总之,我们的研究结果表明,高风险的人乳头瘤病毒进化广谱机制,使先天免疫网络的多重效应的同时消耗,从而创造适合病毒持续感染的反应性细胞环境。

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