Ried G, Hindennach I, Henning U
Max-Planck-Institut für Biologie, Tübingen, Federal Republic of Germany.
J Bacteriol. 1990 Oct;172(10):6048-53. doi: 10.1128/jb.172.10.6048-6053.1990.
Selection was performed for resistance to a phage, Ox2, specific for the Escherichia coli outer membrane protein OmpA, under conditions which excluded recovery of ompA mutants. All mutants analyzed produced normal quantities of OmpA, which was also normally assembled in the outer membrane. They had become essentially resistant to OmpC and OmpF-specific phages and synthesized these outer membrane porins at much reduced rates. The inhibition of synthesis acted at the level of translation. This was due to the presence of lipopolysaccharides (LPS) with defective core oligosaccharides. Cerulenin blocks fatty acid synthesis and therefore that of LPS. It also inhibits synthesis of OmpC and OmpF but not of OmpA (C. Bocquet-Pagès, C. Lazdunski, and A. Lazdunski, Eur. J. Biochem. 118:105-111, 1981). In the presence of the antibiotic, OmpA synthesis and membrane incorporation remained unaffected at a time when OmpC and OmpF synthesis had almost ceased. The similarity of these results with those obtained with the mutants suggests that normal porin synthesis is not only interfered with by production of mutant LPS but also requires de novo synthesis of LPS. Since synthesis and assembly of OmpA into the outer membrane was not affected in the mutants or in the presence of cerulenin, association of this protein with LPS appears to occur with outer membrane-located LPS.
在排除ompA突变体恢复的条件下,对一种特异性针对大肠杆菌外膜蛋白OmpA的噬菌体Ox2进行抗性筛选。所有分析的突变体都产生正常量的OmpA,其也正常组装在外膜中。它们对OmpC和OmpF特异性噬菌体基本产生抗性,并且以大大降低的速率合成这些外膜孔蛋白。合成的抑制作用发生在翻译水平。这是由于存在核心寡糖有缺陷的脂多糖(LPS)。浅蓝菌素阻断脂肪酸合成,因此也阻断LPS的合成。它还抑制OmpC和OmpF的合成,但不抑制OmpA的合成(C. Bocquet-Pagès、C. Lazdunski和A. Lazdunski,《欧洲生物化学杂志》118:105 - 111,1981)。在抗生素存在的情况下,当OmpC和OmpF的合成几乎停止时,OmpA的合成和膜整合仍未受影响。这些结果与突变体所获得结果的相似性表明,正常孔蛋白的合成不仅受到突变LPS产生的干扰,而且还需要LPS的从头合成。由于在突变体中或在浅蓝菌素存在的情况下,OmpA在外膜中的合成和组装未受影响,该蛋白与LPS的结合似乎发生在外膜定位的LPS上。