上睑下垂
细胞外小泡
细胞外
肝细胞癌
微生物学
生物
免疫系统
一氧化氮
免疫
先天免疫系统
肺炎克雷伯菌
细胞生物学
细菌
细菌易位
巨噬细胞
肿瘤微环境
染色体易位
化学
失调
共生
微泡
脂多糖
细菌过度生长
免疫学
作者
Shogo Tsubaki,Sho Nashimoto,Rika Tanaka,Touya Toyomoto,Hiroyasu Tsutsuki,Ken Kato,Jun Nakayama,Kiminori Kimura,Kazuki Oshima,Yusuke Yamamoto,T. Okusaka,Minoru Esaki,Nobuhiro Kawai,Nobuyuki Ota,Yusuke Yoshioka,Takahiro Ochiya,Yoshimasa Saito,Tomohiro Sawa,Katsuto Hozumi,Juntaro Matsuzaki
摘要
Bacterial extracellular vesicles (EVs) are emerging mediators of host-microbe communication; however, their role in human disease remains unclear. Here, we identify two bacterial small tRNAs (tsRNAs) enriched in gut commensal Klebsiella pneumoniae-derived EVs (KpEVs) that are markedly elevated in the serum of patients with hepatocellular carcinoma (HCC). These tsRNAs suppress the production of nitric oxide (NO) by macrophages, a critical antitumor molecule. Notably, KpEVs reach the liver more efficiently than bacterial cells, thus facilitating bacterial translocation from the gut by inducing distinctive immunosuppressive macrophages. Mechanistically, KpEVs drive an M2-like macrophage phenotype, enhance phagocytosis, and inhibit both NO production and caspase-1-dependent pyroptosis during infection. The results show that KpEVs shape a liver microenvironment promoting gut-liver bacterial translocation, which may also influence HCC progression. Our study uncovers a previously unrecognized strategy by which K. pneumoniae exploits EVs to modulate host immunity of distant organs, highlighting tsRNAs as potential biomarkers and therapeutic targets.
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