Gotoh N, Wakebe H, Yoshihara E, Nakae T, Nishino T
Department of Microbiology, Kyoto Pharmaceutical University, Japan.
J Bacteriol. 1989 Feb;171(2):983-90. doi: 10.1128/jb.171.2.983-990.1989.
To investigate the functional role of protein F of the outer membrane of Pseudomonas aeruginosa, we isolated mutants devoid of protein F, and the defective gene was transferred to a wild-type strain by plasmid FP5-mediated conjugation. Chemical analyses of the protein F-deficient outer membrane revealed that the amount of outer membrane protein was reduced to 72 to 74% of that of the protein F-sufficient strain and that lipopolysaccharides and phospholipids increased to 117 to 123% and 135 to 136%, respectively. The mutants and the transconjugant showed the following characteristics: (i) growth rates of protein F-deficient strains in low-osmolarity medium (e.g., L broth containing 0.1% NaCl) were less than 1/10 the rate of the protein F-sufficient strain; (ii) protein F-deficient cells were rounded, and the outer membrane formed large protruded blebs; and (iii) the outer membrane became physically fragile, since a significant amount of periplasmic proteins leaked out and the cells became highly sensitive to osmotic shock. The results suggested that protein F plays an important role in morphogenesis and in maintaining the integrity of the outer membrane. Determination of the diffusion rates of saccharides and beta-lactam antibiotics showed that the protein F-deficient outer membrane had no detectable transport defect compared with the protein F-sufficient outer membrane. The MICs of antibiotics for the protein F-deficient strains were nearly identical to those for the protein F-sufficient strain.
为了研究铜绿假单胞菌外膜蛋白F的功能作用,我们分离出了缺乏蛋白F的突变体,并通过质粒FP5介导的接合作用将缺陷基因转移到野生型菌株中。对缺乏蛋白F的外膜进行化学分析发现,外膜蛋白的量减少到了蛋白F充足菌株的72%至74%,而脂多糖和磷脂分别增加到了117%至123%和135%至136%。突变体和转接合子表现出以下特征:(i)缺乏蛋白F的菌株在低渗培养基(如含0.1% NaCl的L肉汤)中的生长速率不到蛋白F充足菌株的1/10;(ii)缺乏蛋白F的细胞呈圆形,外膜形成大的突出泡状结构;(iii)外膜在物理上变得脆弱,因为大量周质蛋白泄漏出来,细胞对渗透压休克变得高度敏感。结果表明,蛋白F在形态发生和维持外膜完整性方面发挥着重要作用。糖类和β-内酰胺类抗生素扩散速率的测定表明,与蛋白F充足的外膜相比,缺乏蛋白F的外膜没有可检测到的转运缺陷。缺乏蛋白F的菌株对抗生素的最低抑菌浓度与蛋白F充足的菌株几乎相同。