de Pedro Miguel A, Grünfelder Christoph G, Schwarz Heinz
Centro de Biología Molecular Severo Ochoa, Consejo Superior de Investigaciones Científicas, Universidad Autónoma de Madrid, Campus de Cantoblanco, 28049 Madrid, Spain.
J Bacteriol. 2004 May;186(9):2594-602. doi: 10.1128/JB.186.9.2594-2602.2004.
The polar regions of the Escherichia coli murein sacculus are metabolically inert and stable in time. Because the sacculus and the outer membrane are tightly associated, we investigated whether polar inert murein could restrict the mobility of other cell envelope elements. Cells were covalently labeled with a fluorescent reagent, chased in dye-free medium, and observed by microscopy. Fluorescent material was more efficiently retained at the cell poles than at any other location. The boundary between high and low fluorescence intensity areas was rather sharp. Labeled material consisted mostly of cell envelope proteins, among them the free and murein-bound forms of Braun's lipoprotein. Our results indicate that the mobility of at least some cell envelope proteins is restrained at regions in correspondence with underlying areas of inert murein.
大肠杆菌胞壁质囊泡的极性区域代谢不活跃且随时间保持稳定。由于囊泡与外膜紧密相连,我们研究了极性惰性胞壁质是否会限制其他细胞包膜成分的流动性。用荧光试剂对细胞进行共价标记,在无染料培养基中追踪,并通过显微镜观察。荧光物质在细胞极点处比在其他任何位置保留得更有效。高荧光强度区域和低荧光强度区域之间的边界相当清晰。标记物质主要由细胞包膜蛋白组成,其中包括游离形式和与胞壁质结合形式的布劳恩脂蛋白。我们的结果表明,至少一些细胞包膜蛋白的流动性在与惰性胞壁质潜在区域相对应的区域受到限制。