Monteiro Safi A, Sassaki Guilherme L, de Souza Lauro M, Meira Joel A, de Araújo Janete M, Mitchell David A, Ramos Luiz P, Krieger Nadia
Departamento de Química, Universidade Federal do Paraná, Cx.P. 19081, 81531-990 Curitiba, PR, Brazil.
Chem Phys Lipids. 2007 May;147(1):1-13. doi: 10.1016/j.chemphyslip.2007.02.001. Epub 2007 Feb 24.
Pseudomonas aeruginosa DAUPE 614 produced rhamnolipids (3.9gL(-1)) when cultivated on a medium containing glycerol and ammonium nitrate. These rhamnolipids reduced the surface tension of water to 27.3mNm(-1), with a critical micelle concentration of 13.9mgL(-1). The maximum emulsification index against toluene was 86.4%. The structure of the carbohydrate moiety of the glycolipid was determined by gas chromatography-mass spectroscopy (GC-MS) analysis allied to electrospray ionization mass spectrometry and nuclear magnetic resonance (NMR) 1D, 2D (13)C, (1)H spectroscopy. The hydroxyl fatty acids were analyzed by GC-MS as hydroxy-acetylated fatty acid methyl ester derivatives. The positions of the fatty acids in the lipid moiety were variable, with 6 mono-rhamnolipid homologues (Rha-C(10)-C(10); Rha-C(10)-C(8); Rha-C(8)-C(10); Rha-C(10)-C(12:1); Rha-C(12)-C(10); Rha-C(10)-C(12)) and 6 di-rhamnolipid homologues (Rha(2)-C(10)-C(10); Rha(2)-C(10)-C(8); Rha(2)-C(8)-C(10); Rha(2)-C(10)-C(12:1); Rha(2)-C(12)-C(10); Rha(2)-C(10)-C(12)). The ratio of Rha(2)-C(10)-C(10) to Rha-C(10)-C(10) was higher than has been reported in previous studies. Our methodology allowed us to distinguish between the isomeric pairs Rha-C(10)-C(8)/Rha-C(8)-C(10), Rha-C(10)-C(12)/Rha-C(12)-C(10), Rha(2)-C(10)-C(8)/Rha(2)-C(8)-C(10) and Rha(2)-C(12)-C(10)/Rha(2)-C(10)-C(12). For each isomeric pair, the congener with the shorter chain adjacent to the sugar was always more abundant than the congener with longer chain.
铜绿假单胞菌DAUPE 614在含有甘油和硝酸铵的培养基上培养时可产生鼠李糖脂(3.9gL(-1))。这些鼠李糖脂可将水的表面张力降低至27.3mNm(-1),临界胶束浓度为13.9mgL(-1)。对甲苯的最大乳化指数为86.4%。通过气相色谱-质谱联用(GC-MS)分析、电喷雾电离质谱以及核磁共振(NMR)1D、2D(13)C、(1)H光谱法确定了糖脂碳水化合物部分的结构。通过GC-MS分析羟基脂肪酸的乙酰化羟基脂肪酸甲酯衍生物。脂质部分脂肪酸的位置是可变的,有6种单鼠李糖脂同系物(鼠李糖-C(10)-C(10);鼠李糖-C(10)-C(8);鼠李糖-C(8)-C(10);鼠李糖-C(10)-C(12:1);鼠李糖-C(12)-C(10);鼠李糖-C(10)-C(12))和6种双鼠李糖脂同系物(鼠李糖(2)-C(10)-C(10);鼠李糖(2)-C(10)-C(8);鼠李糖(2)-C(8)-C(10);鼠李糖(2)-C(10)-C(12:1);鼠李糖(2)-C(12)-C(10);鼠李糖(2)-C(10)-C(12))。鼠李糖(2)-C(10)-C(10)与鼠李糖-C(10)-C(10)的比例高于先前研究报道的比例。我们的方法使我们能够区分同分异构体对鼠李糖-C(10)-C(8)/鼠李糖-C(8)-C(10)、鼠李糖-C(10)-C(12)/鼠李糖-C(12)-C(10)、鼠李糖(2)-C(10)-C(8)/鼠李糖(2)-C(8)-C(10)和鼠李糖(2)-C(12)-C(10)/鼠李糖(2)-C(10)-C(12)。对于每一对同分异构体,糖基相邻链较短的同系物总是比链较长的同系物更丰富。