生物
细胞生物学
核糖核酸
细胞外小泡
转录组
细胞外
微泡
转染
细菌
胞外囊泡
RNA干扰
基因表达
RNA结合蛋白
基因表达调控
信使核糖核酸
小干扰RNA
模型系统
小泡
计算生物学
微生物代谢
平衡
RNA沉默
微泡
微生物学
抄写(语言学)
细胞
小RNA
下调和上调
作者
Laura Gröger,Shusruto Rishik,Nicole Ludwig,Amila Beganovic,Marcus Koch,Stefanie Rheinheimer,Martin Hart,Petra König,Tabea Trampert,Pascal Paul,Annette Boese,Claus-Michael Lehr,Sören L. Becker,Gregor Fuhrmann,Andreas Keller,Eckart Meese
出处
期刊:Gut microbes
[Landes Bioscience]
日期:2026-02-20
卷期号:18 (1): 2630482-2630482
标识
DOI:10.1080/19490976.2026.2630482
摘要
While extracellular vesicles (EVs) are established mediators of intra-species signaling, their contribution to cross-kingdom communication remains incompletely understood. Here, we investigate the EV-mediated interactions between human colon epithelial cells and both Gram-positive and Gram-negative gut bacteria. We show that bacterial EVs (BEVs) derived from Lacticaseibacillus casei, Enterococcus faecalis, and Proteus mirabilis induce distinct transcriptomic changes in Caco-2 cells depending on the bacterial species, with up to ~6,000 differentially expressed genes, including CCL20, CXCL8, or CXCL10. Transfection of BEV-derived RNA independently induces a subset of similar effects, indicating that the EV-mediated communication is partially driven by the RNA cargo. Conversely, we demonstrate that bacteria interact with Caco-2-derived EVs and miR-192-5p, which is highly abundant (~36.4-fold higher) in EVs isolated from conditioned medium compared with EVs from unconditioned medium, with modest effects on bacterial growth. Furthermore, we show that lipid-based packaging of miR-192-5p modulates its association with the bacteria. Our findings support a conceptual model in which EVs and their RNA cargo contribute to species-dependent host-microbe interactions. This study introduces a framework for understanding EVs as cross-kingdom regulators and underscores the importance of tailored, context-specific analyses for understanding the scope of EV-mediated interactions in microbiome-host homeostasis and disease.
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