Fay J P, Farías R N
J Bacteriol. 1977 Dec;132(3):790-5. doi: 10.1128/jb.132.3.790-795.1977.
The inhibitory action of decanoic acid on both Escherichia coli K-12/154 (normal lipopolysaccharide) and E. coli RC59 (defective lipopolysaccharide) was studied. A correlation was found between the doubling time of E. coli 154 growing in different media and the lethal effect of 0.4% decanoic acid on this bacterium. Decanoic acid (0.4%) exerted a lytic action on glucose-starved and NaN3-inhibited cells of E. coli 154 and RC59. Exponentially growing cultures of both strains were not affected by the addition of 0.4% methyldecanoate, but cells of E. coli RC59 reaching the stationary phase were attacked by that compound. A bactericidal action of 0.4% methyldecanoate on exponential E. coli 154 and RC59 was observed when sodium azide was also present in the media. Concentrations lower than 0.01% methyldecanoate had a lytic effect on spheroplasts from E. coli 154 and RC59. These results indicate that the inhibitory action of a non-metabolizable fatty acid on E. coli depends on the cellular metabolic activity and the outer membrane integrity.
研究了癸酸对大肠杆菌K-12/154(正常脂多糖)和大肠杆菌RC59(缺陷脂多糖)的抑制作用。发现大肠杆菌154在不同培养基中生长的倍增时间与0.4%癸酸对该细菌的致死作用之间存在相关性。0.4%的癸酸对葡萄糖饥饿和NaN₃抑制的大肠杆菌154和RC59细胞具有裂解作用。两种菌株的指数生长培养物不受添加0.4%甲基癸酸的影响,但进入稳定期的大肠杆菌RC59细胞受到该化合物的攻击。当培养基中也存在叠氮化钠时,观察到0.4%甲基癸酸对指数期大肠杆菌154和RC59具有杀菌作用。低于0.01%的甲基癸酸浓度对大肠杆菌154和RC59的原生质球具有裂解作用。这些结果表明,不可代谢脂肪酸对大肠杆菌的抑制作用取决于细胞代谢活性和外膜完整性。