Genevrois Stéphanie, Steeghs Liana, Roholl Paul, Letesson Jean-Jacques, van der Ley Peter
Research Unit in Molecular Biology (URBM), University of Namur (FUNDP), Rue de Bruxelles, 61, 5000 Namur, Belgium.
EMBO J. 2003 Apr 15;22(8):1780-9. doi: 10.1093/emboj/cdg174.
In Gram-negative bacteria, lipopolysaccharide and phospholipid biosynthesis takes place at the inner membrane. How the completed lipid molecules are subsequently transported to the outer membrane remains unknown. Omp85 of Neisseria meningitidis is representative for a family of outer membrane proteins conserved among Gram-negative bacteria. We first demonstrated that the omp85 gene is co-transcribed with genes involved in lipid biosynthesis, suggesting an involvement in lipid assembly. A meningococcal strain was constructed in which Omp85 expression could be switched on or off through a tac promoter-controlled omp85 gene. We demonstrated that the presence of Omp85 is essential for viability. Depletion of Omp85 leads to accumulation of electron-dense amorphous material and vesicular structures in the periplasm. We demonstrated, by fractionation of inner and outer membranes, that lipopolysaccharide and phospholipids mostly disappeared from the outer membrane and instead accumulated in the inner membrane, upon depletion of Omp85. Omp85 depletion did not affect localization of integral outer membrane proteins PorA and Opa. These results provide compelling evidence for a role for Omp85 in lipid transport to the outer membrane.
在革兰氏阴性菌中,脂多糖和磷脂的生物合成在内膜进行。完整的脂质分子随后如何转运至外膜仍不清楚。脑膜炎奈瑟菌的外膜蛋白85(Omp85)是革兰氏阴性菌中保守的一类外膜蛋白的代表。我们首先证明omp85基因与参与脂质生物合成的基因共转录,提示其参与脂质组装。构建了一种脑膜炎球菌菌株,其中Omp85的表达可通过受tac启动子控制的omp85基因进行开关调节。我们证明Omp85的存在对生存能力至关重要。Omp85的缺失导致周质中电子致密的无定形物质和囊泡结构的积累。通过内膜和外膜分级分离,我们证明在Omp85缺失时,脂多糖和磷脂大多从外膜消失,转而在内膜积累。Omp85的缺失不影响外膜整合蛋白PorA和Opa的定位。这些结果为Omp85在脂质向外膜转运中的作用提供了有力证据。