Carpenter Chandra D, Cooley Benjamin J, Needham Brittany D, Fisher Carolyn R, Trent M Stephen, Gordon Vernita, Payne Shelley M
Department of Molecular Biosciences, University of Texas at Austin, Austin, Texas, USA.
Infect Immun. 2014 Feb;82(2):660-9. doi: 10.1128/IAI.01057-13. Epub 2013 Nov 25.
The Vps/VacJ ABC transporter system is proposed to function in maintaining the lipid asymmetry of the outer membrane. Mutations in vps or vacJ in Shigella flexneri resulted in increased sensitivity to lysis by the detergent sodium dodecyl sulfate (SDS), and the vpsC mutant showed minor differences in its phospholipid profile compared to the wild type. vpsC mutants were unable to form plaques in cultured epithelial cells, but this was not due to a failure to invade, to replicate intracellularly, or to polymerize actin via IcsA for movement within epithelial cells. The addition of the outer membrane phospholipase gene pldA on a multicopy plasmid in a vpsC or vacJ mutant restored its resistance to SDS, suggesting a restoration of lipid asymmetry to the outer membrane. However, the pldA plasmid did not restore the mutant's ability to form plaques in tissue culture cells. Increased PldA levels also failed to restore the mutant's phospholipid profile to that of the wild type. We propose a dual function of the Vps/VacJ ABC transporter system in S. flexneri in both the maintenance of lipid asymmetry in the outer membrane and the intercellular spread of the bacteria between adjacent epithelial cells.
Vps/VacJ ABC转运蛋白系统被认为在维持外膜脂质不对称性方面发挥作用。弗氏志贺菌中vps或vacJ的突变导致对去污剂十二烷基硫酸钠(SDS)裂解的敏感性增加,并且vpsC突变体与野生型相比,其磷脂谱存在微小差异。vpsC突变体无法在培养的上皮细胞中形成噬菌斑,但这并非由于入侵失败、细胞内复制失败或通过IcsA聚合肌动蛋白以在上皮细胞内移动所致。在vpsC或vacJ突变体的多拷贝质粒上添加外膜磷脂酶基因pldA可恢复其对SDS的抗性,这表明外膜脂质不对称性得以恢复。然而,pldA质粒并未恢复突变体在组织培养细胞中形成噬菌斑的能力。PldA水平的增加也未能使突变体的磷脂谱恢复到野生型水平。我们提出Vps/VacJ ABC转运蛋白系统在弗氏志贺菌中具有双重功能,既维持外膜脂质不对称性,又促进细菌在相邻上皮细胞之间的细胞间传播。