Laboratory of Chemical Biotechnology, Department of Biochemical and Chemical Engineering, TU Dortmund, Emil-Figge-Str. 66, 44221 Dortmund, Germany.
Microb Biotechnol. 2012 Jan;5(1):45-58. doi: 10.1111/j.1751-7915.2011.00286.x. Epub 2011 Sep 6.
Microorganisms, such as Pseudomonas putida, utilize specific physical properties of cellular membrane constituents, mainly glycerophospholipids, to (re-)adjust the membrane barrier to environmental stresses. Building a basis for membrane composition/function studies, we inventoried the glycerophospholipids of different Pseudomonas and challenged membranes of growing cells with n-butanol. Using a new high-resolution liquid chromatography/mass spectrometry (LC/MS) method, 127 glycerophospholipid species [e.g. phosphatidylethanolamine PE(32:1)] with up to five fatty acid combinations were detected. The glycerophospholipid inventory consists of 305 distinct glycerophospholipids [e.g. PE(16:0/16:1)], thereof 14 lyso-glycerophospholipids, revealing conserved compositions within the four investigated pseudomonads P. putida KT2440, DOT-T1E, S12 and Pseudomonas sp. strain VLB120. Furthermore, we addressed the influence of environmental conditions on the glycerophospholipid composition of Pseudomonas via long-time exposure to the sublethal n-butanol concentration of 1% (v/v), focusing on: (i) relative amounts of glycerophospholipid species, (ii) glycerophospholipid head group composition, (iii) fatty acid chain length, (iv) degree of saturation and (v) cis/trans isomerization of unsaturated fatty acids. Observed alterations consist of changing head group compositions and for the solvent-sensitive strain KT2440 diminished fatty acid saturation degrees. Minor changes in the glycerophospholipid composition of the solvent-tolerant strains P. putida S12 and Pseudomonas sp. VLB120 suggest different strategies of the investigated Pseudomonas to maintain the barrier function of cellular membranes.
微生物,如恶臭假单胞菌,利用细胞膜成分(主要是甘油磷脂)的特定物理性质,来(重新)调整细胞膜对环境压力的屏障。为了研究膜的组成/功能,我们对不同恶臭假单胞菌的甘油磷脂进行了编目,并使用正丁醇对生长中的细胞的膜进行了挑战。使用一种新的高分辨率液相色谱/质谱(LC/MS)方法,检测到了 127 种甘油磷脂物种[如磷脂酰乙醇胺 PE(32:1)],它们具有多达五种脂肪酸组合。甘油磷脂库存由 305 种不同的甘油磷脂组成[如 PE(16:0/16:1)],其中 14 种为溶血性甘油磷脂,揭示了四种所研究的假单胞菌恶臭假单胞菌 KT2440、DOT-T1E、S12 和 Pseudomonas sp. strain VLB120 之间的保守组成。此外,我们通过长时间暴露于亚致死浓度的 1%(v/v)正丁醇,研究了环境条件对假单胞菌甘油磷脂组成的影响,重点关注:(i)甘油磷脂物种的相对含量,(ii)甘油磷脂头部基团组成,(iii)脂肪酸链长,(iv)饱和度和(v)不饱和脂肪酸的顺/反式异构化。观察到的变化包括改变头部基团组成,以及溶剂敏感菌株 KT2440 的脂肪酸饱和度降低。溶剂耐受菌株 P. putida S12 和 Pseudomonas sp. VLB120 的甘油磷脂组成的微小变化表明,所研究的假单胞菌维持细胞膜屏障功能的策略不同。