代谢物
免疫系统
失调
生物
微生物学
拉伤
代谢组学
细菌
微生物群
结肠炎
炎症性肠病
细胞培养
化学
生物化学
体外
分泌物
肽
趋化因子
先天免疫系统
酶
转录组
分泌蛋白
人体微生物群
炎症
抗体
代谢组
信号转导
免疫
肠道菌群
生物合成
碳酸钙-2
作者
L. Yao,Angelo Solania,Anny‐Claude Luissint,Aaron T. Balana,Hua Zhang,Dewakar Sangaraju,Zijuan Lai,James Kuo,Kelly M. Storek,Dennis W. Wolan
标识
DOI:10.1021/acsinfecdis.5c00771
摘要
Colonic microbiome dysbiosis is correlated with inflammatory bowel disease (IBD), and depletion of the commensal bacterium Faecalibacterium prausnitzii (F. prausnitzii) is routinely observed in the metagenomic analyses of IBD patient microbiome samples. F. prausnitzii is likely beneficial to hosts, as oral administration of F. prausnitzii strain A2–165 has anti-inflammatory properties in murine models of colitis. Previous studies attribute the anti-inflammatory effects of F. prausnitzii A2–165 to production of the short-chain fatty acid butyrate, as well as a secreted protein known as microbial anti-inflammatory molecule (MAM). Here, we verified that oral dosing of strain A2–165 protects against DSS-induced murine colitis and further showed that the aqueous-soluble secreted fraction of overnight cultures from a collection of F. prausnitzii strains inhibits inflammatory signatures, including the activation of the host’s NF-κB pathway, production of IL-8, and differentiation of naïve T cells into the TH17 lineage. Our findings against a panel of in vitro assays suggested that the anti-inflammatory responses were attributable to secreted small-molecule or peptide metabolites, as both heat-inactivated and proteinase K-treated F. prausnitzii culture supernatants retained activity. Untargeted and targeted mass spectrometry metabolomics analyses on the soluble anti-inflammatory secretome yielded several unique F. prausnitzii metabolites, including isopentenyladenine. We demonstrated that isopentenyladenine independently modulates host cellular signaling and immune responses and suggest that this newly identified metabolite with human immunomodulatory properties may be useful toward the discovery of IBD-focused therapeutics.
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