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Identification of Epigenetic Mechanisms Involved in the Anti-Asthmatic Effects of Descurainia sophia Seed Extract Based on a Multi-Omics Approach

机译:基于多组学方法的so草地衣提取物抗哮喘作用的表观遗传机制研究

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摘要

Asthma, a heterogeneous disease of the airways, is common around the world, but little is known about the molecular mechanisms underlying the interactions between DNA methylation and gene expression in relation to this disease. The seeds of Descurainia sophia are traditionally used to treat coughs, asthma and edema, but their effects on asthma have not been investigated by multi-omics analysis. We undertook this study to assess the epigenetic effects of ethanol extract of D. sophia seeds (DSE) in an ovalbumin (OVA)-induced mouse model of asthma. We profiled genome-wide DNA methylation by Methyl-seq and characterized the transcriptome by RNA-seq in mouse lung tissue under three conditions: saline control, OVA-induced, and DSE-treated. In total, 1995 differentially methylated regions (DMRs) were identified in association with anti-asthmatic effects, most in promoter and coding regions. Among them, 25 DMRs were negatively correlated with the expression of the corresponding 18 genes. These genes were related to development of the lung, respiratory tube and respiratory system. Our findings provide insights into the anti-asthmatic effects of D. sophia seeds and reveal the epigenetic targets of anti-inflammatory processes in mice.
机译:哮喘是呼吸道的一种异质性疾病,在世界范围内很普遍,但是对于这种疾病相关的DNA甲基化和基因表达之间相互作用的分子机制知之甚少。传统上使用地衣癣的种子来治疗咳嗽,哮喘和水肿,但尚未通过多组学分析研究其对哮喘的影响。我们进行了这项研究,以评估卵白蛋白(OVA)诱发的哮喘小鼠模型中D. sophia种子(DSE)乙醇提取物的表观遗传学作用。我们通过甲基-seq分析了全基因组的DNA甲基化,并在三种条件下,在小鼠肺组织中通过RNA-seq表征了转录组:盐水控制,OVA诱导和DSE处理。总体上,鉴定出1995年与哮喘发作相关的差异甲基化区域(DMR),大多数在启动子和编码区域。其中,25个DMR与相应的18个基因的表达呈负相关。这些基因与肺,呼吸管和呼吸系统的发育有关。我们的发现提供了关于D. sophia种子的抗哮喘作用的见解,并揭示了小鼠抗炎过程的表观遗传学靶标。

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