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3-氧代-C12:2-HSL,来自人类肠道微生物群的群体感应分子,通过苦味受体抑制免疫细胞中的促炎途径。

3-oxo-C12:2-HSL, quorum sensing molecule from human intestinal microbiota, inhibits pro-inflammatory pathways in immune cells via bitter taste receptors.

机构信息

Sorbonne Université, INSERM, Centre de Recherche Saint-Antoine, 75012, Paris, France.

Paris Center for Microbiome Medicine (PaCeMM) FHU, APHP, Paris, Ile-de-France, France.

出版信息

Sci Rep. 2022 Jun 8;12(1):9440. doi: 10.1038/s41598-022-13451-3.

Abstract

In the gut ecosystem, microorganisms regulate group behaviour and interplay with the host via a molecular system called quorum sensing (QS). The QS molecule 3-oxo-C12:2-HSL, first identified in human gut microbiota, exerts anti-inflammatory effects and could play a role in inflammatory bowel diseases where dysbiosis has been described. Our aim was to identify which signalling pathways are involved in this effect. We observed that 3-oxo-C12:2-HSL decreases expression of pro-inflammatory cytokines such as Interleukine-1β (- 35%) and Tumor Necrosis Factor-α (TNFα) (- 40%) by stimulated immune RAW264.7 cells and decreased TNF secretion by stimulated PBMC in a dose-dependent manner, between 25 to 100 µM. Transcriptomic analysis of RAW264.7 cells exposed to 3-oxo-C12:2-HSL, in a pro-inflammatory context, highlighted JAK-STAT, NF-κB and TFN signalling pathways and we confirmed that 3-oxo-C12:2-HSL inhibited JAK1 and STAT1 phosphorylation. We also showed through a screening assay that 3-oxo-C12:2-HSL interacted with several human bitter taste receptors. Its anti-inflammatory effect involved TAS2R38 as shown by pharmacologic inhibition and led to an increase in intracellular calcium levels. We thus unravelled the involvement of several cellular pathways in the anti-inflammatory effects exerted by the QS molecule 3-oxo-C12:2-HSL.

摘要

在肠道生态系统中,微生物通过一种称为群体感应(QS)的分子系统来调节群体行为并与宿主相互作用。QS 分子 3-氧代-C12:2-HSL 最初在人类肠道微生物群中被发现,具有抗炎作用,并且可能在描述为失调的炎症性肠病中发挥作用。我们的目的是确定哪些信号通路参与了这种作用。我们观察到 3-氧代-C12:2-HSL 通过刺激免疫 RAW264.7 细胞降低促炎细胞因子如白细胞介素-1β(-35%)和肿瘤坏死因子-α(TNFα)(-40%)的表达,并以剂量依赖的方式降低刺激 PBMC 产生的 TNF,在 25 至 100 μM 之间。在促炎环境下暴露于 3-氧代-C12:2-HSL 的 RAW264.7 细胞的转录组分析突出了 JAK-STAT、NF-κB 和 TFN 信号通路,我们证实 3-氧代-C12:2-HSL 抑制了 JAK1 和 STAT1 的磷酸化。我们还通过筛选试验表明 3-氧代-C12:2-HSL 与几种人类苦味受体相互作用。其抗炎作用涉及 TAS2R38,如通过药理抑制所示,并导致细胞内钙水平升高。因此,我们揭示了 QS 分子 3-氧代-C12:2-HSL 发挥抗炎作用所涉及的几种细胞途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d91/9177545/c22866493a4c/41598_2022_13451_Fig1_HTML.jpg

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