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Innate mechanisms for Bifidobacterium lactis to activate transient pro-inflammatory host responses in intestinal epithelial cells after the colonization of germ-free rats

机译:无菌双歧杆菌定殖后乳酸双歧杆菌激活肠道上皮细胞中瞬时促炎性宿主反应的先天机制

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摘要

Bifidobacteria comprise a dominant microbial population group in the human intestinal tract with purported beneficial health effects on the host. In this study, we characterized the molecular mechanisms for the initial interaction of probiotic Bifidobacterium lactis strain BB12 with native and intestinal epithelial cell (IEC) lines. We showed that B. lactis-monoassociated Fisher F344 rats transiently induce phosphorylation/activation of the NF-κB transcriptionally active subunit RelA and the mitogen-activated protein kinase (MAPK) p38 in native IEC at day 5 after initial bacterial colonization. In addition, Interleukin 6 (IL-6) gene expression was significantly increased at day 5, demonstrating the physiological relevance of transient transcription factor activation in IEC. In contrast, Bacteroides vulgatus-monoassociated Fisher rats revealed RelA but not p38 MAPK phosphorylation and failed to trigger significant IL-6 gene expression in native IEC. Moreover, we demonstrated that B. lactis triggers NF-κB RelA and p38 MAPK phosphorylation in IEC lines. Adenoviral delivery of mutant IKK-β (Ad5dnIKKβ) and inhibition of the p38 MAPK pathway through the pharmacological inhibitor SB203580 significantly blocked B. lactis-induced IL-6 gene expression in IEC, suggesting that B. lactis triggers NF-κB and MAPK signaling to induce gene expression in the intestinal epithelium. Regarding the mechanisms of bacteria epithelial cell cross-talk, B. lactis-induced IL-6 gene expression was completely inhibited in TLR2 deficient mouse embryogenic fibroblasts (MEF TLR2−/−) as well as TLR2ΔTIR transfected Mode-K cells. In conclusion, we demonstrated that probiotic bacteria transiently trigger innate signal transduction and pro-inflammatory gene expression in the intestinal epithelium at early stages of bacterial colonization.
机译:双歧杆菌是人类肠道中占主导地位的微生物种群,据称对宿主有益。在这项研究中,我们表征了乳酸双歧杆菌益生菌菌株BB12与天然和肠道上皮细胞(IEC)系初始相互作用的分子机制。我们显示,最初细菌定殖后第5天,乳杆菌单支Fisher Fisher F344大鼠在天然IEC中短暂诱导NF-κB转录活性亚基RelA和丝裂原激活的蛋白激酶(MAPK)p38的磷酸化/激活。另外,在第5天,白介素6(IL-6)基因表达显着增加,表明IEC中瞬时转录因子激活的生理相关性。相比之下,与拟杆菌共生的Fisher大鼠揭示了RelA,但未显示p38 MAPK磷酸化,并且未能在天然IEC中触发明显的IL-6基因表达。此外,我们证明了乳双歧杆菌在IEC系中触发NF-κBRelA和p38 MAPK磷酸化。腺病毒递送突变体IKK-β(Ad5dnIKKβ)和通过药理抑制剂SB203580抑制p38 MAPK途径可显着阻断IEC中B.lactis诱导的IL-6基因表达,表明B.lactis触发NF-κB和MAPK信号转导诱导肠上皮中的基因表达。关于细菌上皮细胞串扰的机制,乳酸杆菌诱导的IL-6基因表达在TLR2缺陷型小鼠胚胎成纤维细胞(MEF TLR2-/-)以及TLR2ΔTIR转染的Mode-K细胞中被完全抑制。总之,我们证明了益生菌在细菌定植的早期阶段会短暂触发肠道上皮的先天信号转导和促炎基因表达。

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