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首页> 外文期刊>Food & Function >Dietary resistant starch type 4-derived butyrate attenuates nuclear factor-kappa-B1 through modulation of histone H3 trimethylation at lysine 27
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Dietary resistant starch type 4-derived butyrate attenuates nuclear factor-kappa-B1 through modulation of histone H3 trimethylation at lysine 27

机译:饮食抗性4型淀粉丁酸酯可通过调节赖氨酸27处的组蛋白H3三甲基化来减弱核因子-κB1

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摘要

Indigestible resistant starches (RS) are substrates for gut-microbial metabolism and have been shown to attenuate intestinal inflammation but the supporting evidence is inconsistent and lacks mechanistic explanation. We have recently reported dietary RS type 4 (RS4) induced improvements in immunometabolic functions in humans and a concomitant increase in butyrogenic gut-bacteria. Since inflammation is a key component in metabolic diseases, here we investigated the effects of RS4-derived butyrate on the epigenetic repression of pro-inflammatory genes in vivo and in vitro. RS4-fed mice, compared to the controldiet group, had higher cecal butyrate and increased tri-methylation of lysine 27 on histone 3 (H3K27me3) in the promoter of nuclear factor-kappa-B1 (NF kappa B1) in the colon tissue. The H3K27me3-enrichment inversely correlated with the concentration dependent down-regulation of NF kappa B1 in sodium butyrate treated human colon epithelial cells. Two additional inflammatory genes were attenuated by sodium butyrate, but were not linked with H3K27me3 changes. This exploratory study presents a new opportunity for studying underlying H3K27me3 and other methylation modifying mechanisms linked to RS4 biological activity.
机译:难消化的抗性淀粉(RS)是肠道微生物代谢的底物,并已显示出可减轻肠道炎症,但支持证据不一致且缺乏机理解释。我们最近报道了饮食4型RS(RS4)诱导了人体免疫代谢功能的改善,并伴随着产热肠道细菌的增加。由于炎症是代谢疾病的关键组成部分,因此我们在体内和体外研究了RS4衍生的丁酸酯对促炎基因的表观遗传抑制的作用。与对照组相比,经RS4喂养的小鼠在结肠组织中核因子-κB1(NFκB1)的启动子中,盲肠丁酸含量更高,组蛋白3(H3K27me3)上赖氨酸27的三甲基化程度更高。 H3K27me3富集与丁酸钠处理的人结肠上皮细胞中NFκB1的浓度依赖性下调呈负相关。丁酸钠减少了另外两个炎症基因,但与H3K27me3的变化无关。这项探索性研究为研究潜在的H3K27me3和与RS4生物学活性相关的其他甲基化修饰机制提供了新的机会。

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