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首页> 外文期刊>BMC Genomics >Age dependent changes in the LPS induced transcriptome of bovine dermal fibroblasts occurs without major changes in the methylome
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Age dependent changes in the LPS induced transcriptome of bovine dermal fibroblasts occurs without major changes in the methylome

机译:LPS诱导的牛真皮成纤维细胞转录组的年龄依赖性变化没有发生甲基化组的重大变化

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Background By comparing fibroblasts collected from animals at 5-months or 16-months of age we have previously found that the cultures from older animals produce much more IL-8 in response to lipopolysaccharide (LPS) stimulation. We now expand this finding by examining whole transcriptome differences in the LPS response between cultures from the same animals at different ages, and also investigate the contribution of DNA methylation to the epigenetic basis for the age-dependent increases in responsiveness. Results Age-dependent differences in IL-8 production by fibroblasts in response to LPS exposure for 24 h were abolished by pretreatment of cultures with a DNA demethylation agent, 5-aza-2′deoxycytidine (AZA). RNA-Seq analysis of fibroblasts collected from the same individuals at either 5 or 16 months of age and exposed in parallel to LPS for 0, 2, and 8 h revealed a robust response to LPS that was much greater in the cultures from older animals. Pro-inflammatory genes including IL-8, IL-6, TNF-α, and CCL20 (among many other immune associated genes), were more highly expressed (FDR Conclusions The fibroblast pro-inflammatory response to LPS increases dramatically from 5 to 16 months of age within individual animals. A better understanding of the mechanisms underlying this process could illuminate the physiological processes by which the innate immune response develops and possibly individual variation in innate immune response arises. In addition, although relatively unchanged by age, our data presents a general overview of the bovine fibroblast methylome as a guide for future studies in cattle epigenetics utilizing this cell type.
机译:背景技术通过比较从5个月或16个月大的动物身上收集的成纤维细胞,我们先前发现,来自老年动物的培养物对脂多糖(LPS)的刺激产生更多的IL-8。现在,我们通过检查来自不同年龄的同一动物的培养物之间的LPS反应中的整个转录组差异,扩大了这一发现,并且还研究了DNA甲基化对表观遗传基础的贡献,从而使反应性随年龄增长。结果通过用DNA脱甲基剂5-氮杂2'脱氧胞苷(AZA)预处理培养物,消除了成纤维细胞对LPS暴露24小时后IL-8产生的年龄依赖性差异。对从5或16个月大的同一个体收集的成纤维细胞进行RNA-Seq分析,并与LPS平行暴露0、2和8 h,发现它们对LPS有很强的反应,这在大龄动物的培养物中要强得多。包括IL-8,IL-6,TNF-α和CCL20在内的促炎基因(在许多其他免疫相关基因中)表达更高(FDR结论)从5个月到16个月,成纤维细胞对LPS的促炎反应急剧增加更好地了解该过程的潜在机制可能会阐明先天免疫应答发展的生理过程,并可能引起先天免疫应答的个体差异;此外,尽管年龄相对变化,但我们的数据显示牛成纤维细胞甲基化基因组的一般概述,可作为今后利用这种细胞类型进行牛表观遗传学研究的指南。

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