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Transcriptomic Sequencing Reveals a Set of Unique Genes Activated by Butyrate-Induced Histone Modification

机译:转录组测序揭示了一组由丁酸盐诱导的组蛋白修饰激活的独特基因

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摘要

Butyrate is a nutritional element with strong epigenetic regulatory activity as a histone deacetylase inhibitor. Based on the analysis of differentially expressed genes in the bovine epithelial cells using RNA sequencing technology, a set of unique genes that are activated only after butyrate treatment were revealed. A complementary bioinformatics analysis of the functional category, pathway, and integrated network, using Ingenuity Pathways Analysis, indicated that these genes activated by butyrate treatment are related to major cellular functions, including cell morphological changes, cell cycle arrest, and apoptosis. Our results offered insight into the butyrate-induced transcriptomic changes and will accelerate our discerning of the molecular fundamentals of epigenomic regulation.
机译:丁酸盐是一种营养成分,作为组蛋白脱乙酰基酶抑制剂具有很强的表观遗传调控活性。基于使用RNA测序技术对牛上皮细胞中差异表达基因的分析,揭示了一组独特的基因,这些基因仅在丁酸处理后才被激活。使用Ingenuity Pathways Analysis对功能类别,途径和集成网络进行的补充生物信息学分析表明,丁酸处理激活的这些基因与主要的细胞功能有关,包括细胞形态变化,细胞周期停滞和凋亡。我们的结果提供了对丁酸酯诱导的转录组变化的见识,并将加快我们对表观基因组调控的分子基础的认识。

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