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首页> 外文期刊>Respiratory Research >Genome-wide DNA methylation analysis in lung fibroblasts co-cultured with silica-exposed alveolar macrophages
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Genome-wide DNA methylation analysis in lung fibroblasts co-cultured with silica-exposed alveolar macrophages

机译:与暴露于二氧化硅的肺泡巨噬细胞共培养的肺成纤维细胞的全基因组DNA甲基化分析

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BackgroundExposure to crystalline silica is considered to increase the risk of lung fibrosis. The primary effector cell, the myofibroblast, plays an important role in the deposition of extracellular matrix (ECM). DNA methylation change is considered to have a potential effect on myofibroblast differentiation. Therefore, the present study was designed to investigate the genome-wide DNA methylation profiles of lung fibroblasts co-cultured with alveolar macrophages exposed to crystalline silica in vitro. MethodsAM/fibroblast co-culture system was established. CCK8 was used to assess the toxicity of AMs. mRNA and protein expression of collagen I, α-SMA, MAPK9 and TGF-β1 of fibroblasts after AMs exposed to 100?μg /ml SiO2 for 0–, 24–, or 48?h were determined by means of quantitative real-time PCR, immunoblotting and immunohistochemistry. Genomic DNA of fibroblasts was isolated using MeDIP-Seq to sequence. R software, GO, KEGG and Cytoscape were used to analyze the data. ResultsSiO2 exposure increased the expression of collagen I and α-SMA in fibroblasts in co-culture system. Analysis of fibroblast methylome identified extensive methylation changes involved in several signaling pathways, such as the MAPK signaling pathway and metabolic pathways. Several candidates, including Tgfb1 and Mapk9 , are hubs who can connect the gene clusters. MAPK9 mRNA expression was significantly higher in fibroblast exposed to SiO2 in co-culture system for 48?h. MAPK9 protein expression was increased at both 24-h and 48-h treatment groups. TGF-β1 mRNA expression of fibroblast has a time-dependent manner, but we didn’t observe the TGF-β1 protein expression. Conclusion Tgfb1 and Mapk9 are helpful to explore the mechanism of myofibroblast differentiation. The genome-wide DNA methylation profiles of fibroblasts in this experimental silicosis model will be useful for future studies on epigenetic gene regulation during myofibroblast differentiation.
机译:背景技术接触结晶二氧化硅被认为会增加肺纤维化的风险。主要的效应细胞,成肌纤维细胞,在细胞外基质(ECM)的沉积中起重要作用。 DNA甲基化变化被认为对成肌纤维细胞分化具有潜在影响。因此,本研究旨在研究与暴露于结晶二氧化硅的肺泡巨噬细胞共培养的肺成纤维细胞的全基因组DNA甲基化谱。方法建立AM /成纤维细胞共培养系统。 CCK8用于评估AMs的毒性。确定在100?μg/ ml SiO 2 暴露0、24或48 h时AMs后成纤维细胞胶原I,α-SMA,MAPK9和TGF-β1的mRNA和蛋白表达。通过实时定量PCR,免疫印迹和免疫组化的方法。使用MeDIP-Seq测序分离成纤维细胞的基因组DNA。使用R软件,GO,KEGG和Cytoscape分析数据。结果SiO 2 暴露可增加共培养系统中成纤维细胞中胶原I和α-SMA的表达。成纤维细胞甲基化组的分析确定了广泛的甲基化变化,涉及多个信号传导途径,例如MAPK信号传导途径和代谢途径。包括Tgfb1和Mapk9在内的几种候选基因都是可以连接基因簇的枢纽。在共培养系统中暴露于SiO 2 48?h的成纤维细胞中,MAPK9 mRNA表达显着升高。在24小时和48小时治疗组中,MAPK9蛋白表达均增加。成纤维细胞TGF-β1mRNA的表达呈时间依赖性,但未观察到TGF-β1蛋白的表达。结论Tgfb1和Mapk9有助于探讨成肌纤维细胞分化的机制。在这个实验性矽肺病模型中,成纤维细胞的全基因组DNA甲基化分布图将有助于将来在成肌纤维细胞分化过程中对表观遗传基因调控进行研究。

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