Lee Eun-Young, Bang Joo Young, Park Gun Wook, Choi Dong-Sic, Kang Ji Seoun, Kim Hyun-Jung, Park Kyong-Su, Lee Jeong-Ok, Kim Yoon-Keun, Kwon Kyung-Hoon, Kim Kwang-Pyo, Gho Yong Song
Department of Life Science and Division of Molecular and Life Sciences, Pohang University of Science and Technology, Pohang, Republic of Korea.
Proteomics. 2007 Sep;7(17):3143-53. doi: 10.1002/pmic.200700196.
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.
革兰氏阴性菌持续向细胞外环境分泌天然外膜囊泡(OMV)。尽管该领域最近的进展表明OMV对细菌的存活和致病至关重要,但囊泡形成机制以及OMV的生物学作用尚未明确界定。我们采用蛋白质组学方法,高可信度地鉴定出大肠杆菌来源的天然OMV的141种蛋白质成分;两项独立分析分别鉴定出104种和117种蛋白质,两次试验中有80种蛋白质重叠。在鉴定出的蛋白质组中,外膜蛋白高度富集,而内膜蛋白缺失,这表明存在针对囊泡蛋白的特定分选机制。我们还鉴定出参与囊泡形成、清除有毒化合物和攻击噬菌体、消除竞争生物的蛋白质,以及参与促进遗传物质和蛋白质向其他细菌转移、靶向宿主细胞和调节宿主免疫反应的蛋白质。本研究提供了天然细菌OMV的全景视图。这些信息不仅将帮助我们阐明非致病和致病细菌来源的OMV的生物发生和功能,还将有助于开发针对致病菌株有效的疫苗和抗生素。