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IRF-5 and NF-κB p50 co-regulate IFN-β and IL-6 expression in TLR9-stimulated human plasmacytoid dendritic cells

机译:IRF-5和NF -κB p50粘住干扰素β和il - 6的分泌在人类血浆TLR9-stimulated表达式树突细胞

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Synthetic oligonucleotides (ODN) expressing CpG motifs mimic the ability of bacterial DNA to trigger the innate immune system via TLR9. Plasmacytoid dendritic cells (pDCs) make a critical contribution to the ensuing immune response. This work examines the induction of antiviral (IFN-β) and pro-inflammatory (IL-6) cytokines by CpG-stimulated human pDCs and the human CAL-1 pDC cell line. Results show that interferon regulatory factor-5 (IRF-5) and NF-κB p50 are key co-regulators of IFN-β and IL-6 expression following TLR9-mediated activation of human pDCs. The nuclear accumulation of IRF-1 was also observed, but this was a late event that was dependant on type 1 IFN and unrelated to the initiation of gene expression. IRF-8 was identified as a novel negative regulator of gene activation in CpG-stimulated pDCs. As variants of IRF-5 and IRF-8 were recently found to correlate with susceptibility to certain autoimmune diseases, these findings are relevant to our understanding of the pharmacologic effects of "K" ODN and the role of TLR9 ligation under physiologic, pathologic, and therapeutic conditions.
机译:合成寡核苷酸(ODN)表达CpG图案模仿细菌DNA的能力通过TLR9识别触发先天免疫系统。血浆树突细胞(髓)做一个随后的免疫至关重要的贡献响应。抗病毒(IFN -β)和促炎(il - 6)由CpG-stimulated人类髓和细胞因子人类CAL-1 pDC细胞系。干扰素监管把5 (IRF-5)和NF -κBp50关键co-regulators干扰素-β和il - 6的分泌TLR9-mediated激活后表达人类的髓。也观察到,但这是一个迟到事件依赖于1型干扰素和无关基因表达的启动。确认为一种新颖的负调节基因激活在CpG-stimulated pDCs。IRF-5 IRF-8最近发现关联对某些自身免疫性与我们相关的疾病,这些发现理解“K”的药理作用ODN和TLR9识别下结扎的角色生理、病理和治疗条件。

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