Faecalibacterium prausnitzii Produces Butyrate to Maintain Th17/Treg Balance and to Ameliorate Colorectal Colitis by Inhibiting Histone Deacetylase 1

普氏粪杆菌 结肠炎 丁酸盐 组蛋白脱乙酰基酶 炎症性肠病 癌症研究 Treg细胞 免疫学 医学 组蛋白 内科学 生物 生物化学 肠道菌群 疾病 遗传学 基因 免疫系统 发酵 T细胞 白细胞介素2受体
作者
Lixing Zhou,Mingming Zhang,Yuming Wang,Robert Dorfman,Hang Liu,Ting Yu,Xiaotian Chen,Dehua Tang,Lei Xu,Yuyao Yin,Yida Pan,Qian Zhou,Yihua Zhou,Chenggong Yu
出处
期刊:Inflammatory Bowel Diseases [Oxford University Press]
卷期号:24 (9): 1926-1940 被引量:369
标识
DOI:10.1093/ibd/izy182
摘要

Inflammatory bowel disease (IBD)–associated dysbiosis is characterized by a loss of Faecalibacterium prausnitzii, whose supernatant exerts an anti-inflammatory effect. However, the anti-inflammatory substances in F. prausnitzii supernatant and the mechanism in ameliorating colitis in IBD have not yet been fully investigated. Experimental colitis models were induced and evaluated by clinical examination and histopathology. Levels of cytokines and ratio of T cells were detected by enzyme-linked immunosorbent assay and flow cytometry analysis, respectively. F. prausnitzii supernatant was separated by macroporous resins. After extraction, the substances in supernatant were identified by gas chromatography–mass spectrometer. T-cell differentiation assay was conducted in vitro. Changes in signaling pathways were examined by immunoblot, immunohistochemistry, and immunofluorescent staining. We found that the supernatant of F. prausnitzii could regulate T helper 17 cell (Th17)/regulatory T cell (Treg) differentiation. Then, we identified butyrate produced by F. prausnitzii that played the anti-inflammatory effects by inhibiting interleukin (IL)-6/signal transducer and the activator of transcription 3 (STAT3)/IL-17 pathway and promoting forkhead box protein P3 (Foxp3). Finally, we demonstrated that the target of butyrate was histone deacetylase 1 (HDAC1). It is butyrate, instead of other substances produced by F. prausnitzii, that maintains Th17/Treg balance and exerts significant anti-inflammatory effects in colorectal colitis rodents, by inhibiting HDAC1 to promote Foxp3 and block the IL-6/STAT3/IL-17 downstream pathway. F. prausnitzii could be an option for further investigation for IBD treatment. Targeting the butyrate-HDAC1-T-cell axis offers an effective novel approach in the treatment of inflammatory disease.
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