The composition and function of Enterococcus faecalis membrane vesicles
Author(s) -
Irina Afonina,
Brenda Yin Qi Tien,
Zeus Jaren Nair,
Artur Matysik,
Ling Ning Lam,
Mark Veleba,
Augustine Jing Jie Koh,
Rafi Rashid,
Amaury CazenaveGassiot,
Marcus Wenk,
Sun Nyunt Wai,
Kimberly Kline
Publication year - 2021
Publication title -
microlife
Language(s) - English
Resource type - Journals
ISSN - 2633-6693
DOI - 10.1093/femsml/uqab002
Subject(s) - enterococcus faecalis , virulence , microbiology and biotechnology , virulence factor , bacteria , biology , biogenesis , bacterial outer membrane , biofilm , secretion , gram negative bacteria , gene , biochemistry , escherichia coli , staphylococcus aureus , genetics
Membrane vesicles (MVs) contribute to various biological processes in bacteria, including virulence factor delivery, antimicrobial resistance, host immune evasion and cross-species communication. MVs are frequently released from the surface of both Gram-negative and Gram-positive bacteria during growth. In some Gram-positive bacteria, genes affecting MV biogenesis have been identified, but the mechanism of MV formation is unknown. In Enterococcus faecalis, a causative agent of life-threatening bacteraemia and endocarditis, neither mechanisms of MV formation nor their role in virulence has been examined. Since MVs of many bacterial species are implicated in host–pathogen interactions, biofilm formation, horizontal gene transfer, and virulence factor secretion in other species, we sought to identify, describe and functionally characterize MVs from E. faecalis. Here, we show that E. faecalis releases MVs that possess unique lipid and protein profiles, distinct from the intact cell membrane and are enriched in lipoproteins. MVs of E. faecalis are specifically enriched in unsaturated lipids that might provide membrane flexibility to enable MV formation, providing the first insights into the mechanism of MV formation in this Gram-positive organism.
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