Global proteomic profiling of native outer membrane vesicles derived from Escherichia coli

细菌外膜 生物 大肠杆菌 细菌 微生物学 蛋白质组学 分泌物 膜蛋白 蛋白质组 胞外囊泡 细胞生物学 小泡 生物发生 生物化学 基因 微泡 遗传学 小RNA
作者
Eun‐Young Lee,Joo Young Bang,Gun Wook Park,Dongsic Choi,Ji Seoun Kang,Hyun‐Jung Kim,Kyong‐Su Park,Jeong‐Ok Lee,Yoon‐Keun Kim,Kyung‐Hoon Kwon,Kwang Pyo Kim,Yong Song Gho
出处
期刊:Proteomics [Wiley]
卷期号:7 (17): 3143-3153 被引量:413
标识
DOI:10.1002/pmic.200700196
摘要

Gram-negative bacteria constitutively secrete native outer membrane vesicles (OMVs) into the extracellular milieu. Although recent progress in this area has revealed that OMVs are essential for bacterial survival and pathogenesis, the mechanism of vesicle formation and the biological roles of OMVs have not been clearly defined. Using a proteomics approach, we identified 141 protein components of Escherichia coli-derived native OMVs with high confidence; two separate analyses yielded identifications of 104 and 117 proteins, respectively, with 80 proteins overlapping between the two trials. In the group of identified proteins, the outer membrane proteins were highly enriched, whereas inner membrane proteins were lacking, suggesting that a specific sorting mechanism for vesicular proteins exists. We also identified proteins involved in vesicle formation, the removal of toxic compounds and attacking phage, and the elimination of competing organisms, as well as those involved in facilitating the transfer of genetic material and protein to other bacteria, targeting host cells, and modulating host immune responses. This study provides a global view of native bacterial OMVs. This information will help us not only to elucidate the biogenesis and functions of OMV from nonpathogenic and pathogenic bacteria but also to develop vaccines and antibiotics effective against pathogenic strains.
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