Gut commensal metabolite rhamnose promotes macrophages phagocytosis by activating SLC12A4 and protects against sepsis in mice

吞噬作用 代谢物 微生物学 肠道菌群 鼠李糖 败血症 巨噬细胞 免疫学 生物 生物化学 多糖 体外
作者
Dongping Li,Rongjuan Wei,Xianglong Zhang,Shenhai Gong,Meijuan Wan,Fangzhao Wang,Jiaxin Li,Meiling Chen,Ruofan Liu,Yantong Wan,Yinghao Hong,Zhenhua Zeng,Peng Gu,Zhang Wang,Kutty Selva Nandakumar,Yong Jiang,Hongwei Zhou,Chen Peng
出处
期刊:Acta Pharmaceutica Sinica B [Elsevier BV]
卷期号:14 (7): 3068-3085 被引量:12
标识
DOI:10.1016/j.apsb.2024.03.025
摘要

Sepsis progression is significantly associated with the disruption of gut eubiosis. However, the modulatory mechanisms of gut microbiota operating during sepsis are still unclear. Herein, we investigated how gut commensals impact sepsis development in a pre-clinical model. Cecal ligation and puncture (CLP) surgery was used to establish polymicrobial sepsis in mice. Mice depleted of gut microbiota by an antibiotic cocktail (ABX) exhibited a significantly higher level of mortality than controls. As determined by metabolomics analysis, ABX treatment has depleted many metabolites, and subsequent supplementation with L-rhamnose (rhamnose, Rha), a bacterial carbohydrate metabolite, exerted profound immunomodulatory properties with a significant enhancement in macrophage phagocytosis, which in turn improved organ damage and mortality. Mechanistically, rhamnose binds directly to and activates the solute carrier family 12 (potassium-chloride symporter), member 4 (SLC12A4) in macrophages and promotes phagocytosis by activating the small G-proteins, Ras-related C3 botulinum toxin substrate1 (Rac1) and cell division control protein 42 homolog (Cdc42). Interestingly, rhamnose has enhanced the phagocytosis capacity of macrophages from sepsis patients. In conclusion, by identifying SLC12A4 as the host interacting protein, we disclosed that the gut commensal metabolite rhamnose is a functional molecular that could promote the phagocytosis capacity of macrophages and protect the host against sepsis.
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