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首页> 外文期刊>Parasitology >Unmethylated CpG motifs in Toxoplasma gondii DNA induce TLR9-and IFN-beta-dependent expression of alpha-defensin-5 in intestinal epithelial cells
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Unmethylated CpG motifs in Toxoplasma gondii DNA induce TLR9-and IFN-beta-dependent expression of alpha-defensin-5 in intestinal epithelial cells

机译:弓形虫DNA中未甲基化的CpG基序诱导肠上皮细胞中α-防御素-5的TLR9和IFN-beta依赖性表达

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The gut epithelial barrier is a strategic place to prevent, or at least to limit, parasite dissemination upon oral infection with Toxoplasma gondii. Innate immunity to this pathogen results from delicate interactions involving different components of the infecting agent and the host. We herein aimed to examine the molecular mechanism by which protozoan DNA boosts the production of alpha-defensin-5 (DEFA-5), the main antimicrobial peptide at the target site of infection. The present study shows that DEFA-5 is rapidly upregulated in intestinal epithelial cells following intracellular Toll-like receptor 9 (TLR9) activation by unmethylated CpG motifs in DNA from T. gondii (CpG-DNA). Concomitantly, CpG-DNA purified from the pathogen markedly increased TLR9 mRNA expression levels in the Caco-2 cell line. We further verified that DEFA-5 production was dependent on interferon-beta released from these cells upon treatment with CpG-DNA prepared from tachyzoites. Our results suggest that, in protozoan DNA-stimulated intestinal epithelial cells, the TLR9/interferon-beta/DEFA-5 pathway may initiate an innate anti-T. gondii response without the need of parasite invasion. These findings highlight the key role of the gut epithelium in Toxoplasma recognition and amplification of local host defence against this microbe, thereby contributing to gain insight into immunoprotective mechanisms and to improve therapeutic strategies.
机译:肠道上皮屏障是预防或至少限制刚地弓形虫口腔感染后寄生虫传播的重要场所。对这种病原体的先天免疫是由涉及感染因子和宿主不同成分的微妙相互作用引起的。我们在本文中旨在研究原生动物DNA增强α-防御素-5(DEFA-5)的分子机制,α-防御素-5(DEFA-5)是感染目标部位的主要抗菌肽。本研究表明,刚地弓形虫DNA(CpG-DNA)中的未甲基化CpG基序激活细胞内Toll样受体9(TLR9)后,肠道上皮细胞中的DEFA-5迅速上调。同时,从病原体纯化的CpG-DNA显着增加了Caco-2细胞系中TLR9 mRNA的表达水平。我们进一步验证了DEFA-5的产生依赖于用速殖子制备的CpG-DNA处理后从这些细胞释放的干扰素-β。我们的结果表明,在原生动物DNA刺激的肠上皮细胞中,TLR9 /干扰素-β/ DEFA-5途径可能引发先天性抗T。弓形虫反应,无需寄生虫入侵。这些发现凸显了肠道上皮在弓形体识别和放大针对该微生物的局部宿主防御中的关键作用,从而有助于深入了解免疫保护机制并改善治疗策略。

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