Letts V, Shaw P, Shapiro L, Henry S
J Bacteriol. 1982 Sep;151(3):1269-78. doi: 10.1128/jb.151.3.1269-1278.1982.
The fatty acid composition of the dimorphic bacterium Caulobacter crescentus was found to consist primarily of 16- and 18-carbon fatty acids, both saturated and monounsaturated, in agreement with the findings of Chow and Schmidt (J. Gen. Microbiol. 83:359-373, 1974). In addition, two minor but as yet unidentified fatty acids were detected. Chromatographic mobilities suggested that these fatty acids may be a cyclopropane and a branched-chain fatty acid. In addition, we demonstrated that the fatty acid composition of wild-type C. crescentus can be altered by growing the cells in medium supplemented with any one of a variety of unsaturated fatty acids. Linoleic acid, a diunsaturated fatty acid which is not synthesized by C. crescentus, was incorporated into phospholipids without apparent modification. In addition, we found that C. crescentus, like Escherichia coli, synthesizes vaccenic acid (18:1 delta 11,cis) rather than oleic acid (18:1 delta 9,cis). This result allowed us to deduce that the mechanism of fatty acid desaturation in C. crescentus is anaerobic, as it is in E. coli. Finally, we examined the fatty acid biosynthesis and composition of two unsaturated fatty acid auxotrophs of C. crescentus. Neither of these mutants resembled the E. coli unsaturated fatty acid auxotrophs, which have defined enzymatic lesions in fatty acid biosynthesis. Rather, the mutants appeared to have defects relating to the complex coordination of membrane biogenesis and cell cycle events in C. crescentus.
新月柄杆菌这种双态细菌的脂肪酸组成主要由16碳和18碳脂肪酸构成,包括饱和脂肪酸和单不饱和脂肪酸,这与Chow和Schmidt的研究结果一致(《普通微生物学杂志》83:359 - 373, 1974)。此外,还检测到两种含量较少但尚未鉴定的脂肪酸。色谱迁移率表明这些脂肪酸可能是一种环丙烷脂肪酸和一种支链脂肪酸。另外,我们证明了通过在添加了多种不饱和脂肪酸中任一种的培养基中培养细胞,野生型新月柄杆菌的脂肪酸组成会发生改变。亚油酸是一种新月柄杆菌不能合成的二不饱和脂肪酸,它被整合到磷脂中且没有明显修饰。此外,我们发现新月柄杆菌与大肠杆菌一样,合成的是反式vaccenic酸(18:1 Δ11,顺式)而非油酸(18:1 Δ9,顺式)。这一结果使我们推断新月柄杆菌中的脂肪酸去饱和机制与大肠杆菌一样是厌氧的。最后,我们研究了新月柄杆菌的两个不饱和脂肪酸营养缺陷型菌株的脂肪酸生物合成和组成。这两个突变体均与大肠杆菌的不饱和脂肪酸营养缺陷型不同,后者在脂肪酸生物合成中有明确的酶损伤。相反,这些突变体似乎在新月柄杆菌的膜生物合成和细胞周期事件的复杂协调方面存在缺陷。