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LPS-Induced Endotoxemia Evokes Epigenetic Alterations in Mitochondrial DNA That Impacts Inflammatory Response

机译:LPS诱导的内毒血症唤起影响炎症反应的线粒体DNA中的表观遗传改变

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摘要

Mitochondrial DNA (mtDNA) plays a vital role as a damage-associated molecular pattern in sepsis being able to shape the immune response. Since pathogen recognition receptors of innate immune cells are activated by demethylated DNA only, we set out to investigate the amount of DNA methyltransferase 1 (DNMT1) in mitochondria and the extent of mtDNA methylation in a human endotoxin model. Peripheral blood mononuclear cells of 20 healthy individuals were isolated from whole blood and stimulated with lipopolysaccharide (LPS) for 48 h. Subsequently, DNMT1 protein abundance was assessed in whole cells and a mitochondrial fraction. At the same time, methylation levels of mtDNA were quantified, and cytokine expression in the supernatant was measured. Despite increased cellular expression of DNMT1 after LPS stimulation, the degree of mtDNA methylation slightly decreased. Strikingly the mitochondrial protein abundance of DNMT1 was reduced by 50% in line with the lower degree of mtDNA methylation. Although only modest alterations were seen in the degree of mtDNA methylation, these strongly correlated with IL-6 and IL-10 expression. Our data may hint at a protein import problem for DNMT1 into the mitochondria under LPS stimulation and suggest a role of demethylated mtDNA in the regulation of the inflammatory immune response.
机译:线粒体DNA(MTDNA)在脓毒症中造成免疫应答的损伤相关的分子模式起着至关重要的作用。由于仅通过去甲基化DNA激活先天免疫细胞的病原体识别受体,我们开始研究线粒体中DNA甲基转移酶1(DNMT1)的量和人内毒素模型中的MTDNA甲基化程度。将20个健康个体的外周血单核细胞从全血中分离出来,并用脂多糖(LPS)刺激48小时。随后,在全细胞和线粒体级分中评估DNMT1蛋白质丰度。同时,量化MTDNA的甲基化水平,并测量上清液中的细胞因子表达。尽管LPS刺激后DNMT1细胞表达增加,但MTDNA甲基化的程度略微降低。尖锐地,DNMT1的线粒体蛋白质丰度在较低程度的MTDNA甲基化方面减少了50%。尽管在MTDNA甲基化程度中只看到了适度的改变,但这些与IL-6和IL-10表达强烈相关。我们的数据可能暗示DNMT1的蛋白质导入问题,在LPS刺激下DNMT1进入线粒体,并表明去甲基化MTDNA在调节炎症免疫应答中的作用。

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