Vinogradov E V, Shashkov A A, Dmitriev B A, Kochetkov N K, Stanislavsky E S, Mashilova G M
Eur J Biochem. 1983 Aug 1;134(2):289-97. doi: 10.1111/j.1432-1033.1983.tb07564.x.
On mild acid degradation of Pseudomonas aeruginosa O:3(a),c, O:3a,d,e and O:3(a),d,f lipopolysaccharides O-specific polysaccharides were isolated. The trisaccharide repeating units of O:3(a),c and O:3a,d,e polysaccharides contained 2-acetamido-2,6-dideoxy-D-galactose and 2,3-(1-acetyl-2-methyl-2-imidazolino-5, 4)-2,3-dideoxy-D-mannuronic acid, which were identified previously as the constituents of P. aeruginosa O:3a,b and O:3a,d O-specific polysaccharides, as well as 2,3-diacetamido-2, 3-dideoxyl-L-guluronic acid, which has never before been found in nature. The last monosaccharide was identified without being isolated in the free state, by means of 13C nuclear magnetic resonance spectroscopy. The structures of O:3(a),c and O:3a,d,e polysaccharides were established by selective hydrogen fluoride solvolysis followed by modification of the trisaccharides obtained and analysis of the 13C nuclear magnetic resonance spectra at each modification stage. The polysaccharides possessed similar structures of repeating units differing from each other in the anomeric configuration of the N-acetylfucosamine residue only: leads to 4)DManImU-(beta 1 leads to 4) LGul(NAc)2U(alpha 1 leads to 3)DFucNAc(beta 1-and leads to 4)DManImU(beta 1 leads to 4)LGul(NAc)2U(alpha 1 leads to 3)DFucNAc(alpha 1-, where DManImU = 2,3-(1-acetyl-2-methyl-2-imidazolino-5,4)-2,3-dideoxy-D-mannuronic acid, LGul(NAc)2U = 2,3-diacetamido-2,3-dideoxy-L-guluronic acid, DFucNAc = 2-acetamido-2,6-dideoxy-D-galactose. The same components were detected in the O:3(a),d,f polysaccharide but not in the same stoichiometric ratio; this polysaccharide possessed no regular structure. The immunochemical study of lipopolysaccharides of all five P. aeruginosa O:3 serotypes showed a definite interrelation between their serological properties and structures of the corresponding O-specific polysaccharides.
在对铜绿假单胞菌O:3(a),c、O:3a,d,e和O:3(a),d,f脂多糖进行温和酸降解时,分离得到了O-特异性多糖。O:3(a),c和O:3a,d,e多糖的三糖重复单元含有2-乙酰氨基-2,6-二脱氧-D-半乳糖和2,3-(1-乙酰基-2-甲基-2-咪唑啉-5,4)-2,3-二脱氧-D-甘露糖醛酸,它们先前已被鉴定为铜绿假单胞菌O:3a,b和O:3a,d O-特异性多糖的成分,以及2,3-二乙酰氨基-2,3-二脱氧-L-古洛糖醛酸,该物质此前从未在自然界中发现。通过13C核磁共振光谱法,在未分离出游离状态的情况下鉴定出了最后一种单糖。通过选择性氟化氢溶剂解,随后对所得三糖进行修饰,并在每个修饰阶段分析13C核磁共振光谱,确定了O:3(a),c和O:3a,d,e多糖的结构。这些多糖具有相似的重复单元结构,仅在N-乙酰岩藻糖胺残基的异头构型上彼此不同:分别为4)DManImU-(β1→4)LGul(NAc)2U(α1→3)DFucNAc(β1-和4)DManImU(β1→4)LGul(NAc)2U(α1→3)DFucNAc(α1-,其中DManImU = 2,3-(1-乙酰基-2-甲基-2-咪唑啉-5,4)-2,3-二脱氧-D-甘露糖醛酸,LGul(NAc)2U = 2,3-二乙酰氨基-2,3-二脱氧-L-古洛糖醛酸,DFucNAc = 2-乙酰氨基-2,6-二脱氧-D-半乳糖。在O:3(a),d,f多糖中检测到了相同的成分,但比例不同;该多糖没有规则结构。对所有五种铜绿假单胞菌O:3血清型的脂多糖进行的免疫化学研究表明,它们的血清学性质与相应O-特异性多糖的结构之间存在明确的相互关系。