在脱氧雪腐镰刀醇诱导的回肠损伤中,乳铁蛋白补充通过nr5a2介导的组蛋白修饰调节氧化和代谢基因。

Xudong Guo, Xiaoyue Yuan, Zhiyong Xu, Jianhua Liu, Rongrong Lv, Yiqin Gao, Wenjing Xu, Dejun Ji, Yuting Guo
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引用次数: 0

摘要

乳铁蛋白(LF)对肠道内稳态具有良好的保护作用,但其潜在机制,特别是表观遗传调控机制尚不清楚。本研究旨在探讨膳食LF通过组蛋白修饰表观遗传学调节氧化基因对DON污染饮食小鼠回肠炎症的影响。在形态学分析中,我们发现与载药组相比,DON暴露增加了回肠隐窝深度(CD)和绒毛宽度(VW),但降低了绒毛高度(VH)和VH: CD比值。与此一致,在don暴露小鼠回肠中,ROS和MDA升高,ATP、SOD、CAT、GSH和复合物I、III、V降低。与此相反,LF显著改善了形态学和生化指标的损伤。接下来,我们进行了转录组分析,利用DON或LF处理的小鼠回肠RNA来探索信号通路的变化。首先,don暴露小鼠的细胞周期通路基因显著下调,LF改善了细胞周期谱。基因本体论分析再次表明,DON暴露显著激活了炎症和氧化应激,当DON暴露的小鼠补充LF饮食时,这些炎症和氧化应激都得到了恢复。与这些发现一致,LF处理也可以改善氧化磷酸化降低和tnf - α升高的信号通路。重要的是,组蛋白修饰,包括乙酰化、甲基化和乳酸化,被认为是DON或LF治疗中至关重要的参与者,其中LF显著增加了这些基因上组蛋白修饰的缺失。通过生物信息学分析和qRT-PCR验证,选择核受体NR5A2作为DON刺激小鼠回肠的关键主控基因。LF对don暴露小鼠nr5a2介导的氧化应激基因Ncoa4和Prdx3具有有益作用。此外,通过ChIP-qPCR验证了涉及H3K9ac、H3K18ac、H3k27ac、H3K4me1、H3K9la和H3K18la的组蛋白标记促进了nr5a2调节作用的表观遗传调控。我们得出结论,饲粮LF通过组蛋白修饰调节氧化基因Ncoa4和Prdx3,有效改善小鼠DON诱导的回肠病变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lactoferrin supplementation modulates the oxidative and metabolic genes by NR5A2-mediated histone modifications in deoxynivalenol-induced ileum injury.

Given that lactoferrin (LF) exerts an excellent protection of intestinal homeostasis, the underlying mechanisms, especially epigenetic regulations, are still unknown. This study aimed to investigate the effects of dietary LF epigenetically modulates the oxidative genes by histone modifications to ameliorate ileum inflammation of mice exposed to DON contaminated diet. As expected, we found in the morphology analysis that DON exposure increased ileum crypt depth (CD) and villus width (VW) but reduced villus height (VH) and VH: CD ratio compared to those of the vehicle group. Consistently, the elevated ROS and MDA, along with the decreased ATP, SOD, CAT, GSH, and complex I, III, V were observed in the DON-exposed mice ileum. In contrast, LF markedly ameliorated the impairments of morphological and biochemical indexes. Next, we conducted transcriptome analysis to explore the changed signaling pathways using the ileum RNA of the mice treated with DON or LF. Firstly, the cell cycle pathway genes were significantly downregulated in the DON-exposed mice, and LF improved the cell cycle profile. Again, gene ontology analysis showed that inflammation and oxidative stress were significantly activated by DON exposure, and these were recovered when the DON-exposed mice were supplemented with an LF diet. Consistent with these findings, the signaling pathways of the reduced oxidative phosphorylation and elevated TNFα were also observed to be ameliorated by LF treatment. Importantly, histone modifications, including acetylation, methylation, and lactylation were suggested to be the vital players involved in the DON or LF treatment, in which LF significantly increased the loss of histone modifications on these genes. With a bioinformatics analysis and validation by qRT-PCR, the nuclear receptor NR5A2 was selected as a key master in the ileum of mice stimulated by DON. LF performed the benefit function on the NR5A2-mediated oxidative stress genes Ncoa4 and Prdx3 in the DON-exposed mice. Moreover, a ChIP-qPCR was used to verify that histone marks involving H3K9ac, H3K18ac, H3k27ac, H3K4me1, H3K9la, and H3K18la facilitated the epigenetic regulation of NR5A2-modulated actions. We conclude that dietary LF effectively ameliorated ileum lesions induced by DON in mice by modulating oxidative genes Ncoa4 and Prdx3 through histone modifications.

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