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铜绿假单胞菌的体细胞抗原。铜绿假单胞菌O10(拉尼)脂多糖O特异性多糖链的结构。

Somatic antigens of Pseudomonas aeruginosa. The structure of O-specific polysaccharide chains of P. aeruginosa O10 (Lányi) lipopolysaccharides.

作者信息

Knirel Y A, Vinogradov E V, Shashkov A S, Dmitriev B A, Kochetkov N K, Stanislavsky E S, Mashilova G M

出版信息

Eur J Biochem. 1986 May 15;157(1):129-38. doi: 10.1111/j.1432-1033.1986.tb09648.x.

Abstract

Mild acid degradation of lipopolysaccharides from Pseudomonas aeruginosa O10a and O10a,b (Lányi classification) resulted in O-specific polysaccharides built up of trisaccharide repeating units containing 2-acetamido-2,6-dideoxy-D-glucose (N-acetylquinovosamine, DQuiNAc), 2-acetamido-2,6-dideoxy-D-galactose (N-acetylfucosamine, DFucNAc), and 5-acetamido-3,5,7,9-tetradeoxy-7-[(R)-3-hydroxybutyramido] -L-glycero-L-manno-nonulosonic acid. The latter is a di-N-acyl derivative of a new sialic-acid-like sugar which was called by us pseudaminic acid (PseN2). A 3-hydroxybutyric acid residue was also found in natural carbohydrates for the first time. In the O10a,b polysaccharide pseudaminic acid carried an O-acetyl group at position 4. For selective cleavage of the O10a polysaccharide, solvolysis with hydrogen fluoride was employed which, owing to the relatively high stability of the glycosidic linkage of pseudaminic acid, led to the disaccharide with this sugar on the non-reducing terminus. Performing the solvolysis in methanol afforded the methyl glycoside of this disaccharide which proved to be more advantageous for further analysis. Carboxyl-reduction made the glycosidic linkage of pseudaminic acid extremely labile, and mild acid hydrolysis of the carboxyl-reduced 010a polysaccharide afforded the trisaccharide with a ketose derivative on the reducing terminus. Establishing the structure of the oligosaccharide fragments obtained and interpreting the 13C nuclear resonance spectra of the polysaccharides allowed to determine the following structure for their repeating units: (formula: see text) In the polysaccharides the N-acetylquinovosamine residue is attached not to pseudaminic acid itself, but to its N-acyl substituent, 3-hydroxybutyryl group, and thus the monomers are linked via both glycosidic and amidic linkages.

摘要

对铜绿假单胞菌O10a和O10a,b(兰伊分类法)的脂多糖进行温和酸降解,得到了由三糖重复单元构成的O-特异性多糖,这些重复单元包含2-乙酰氨基-2,6-二脱氧-D-葡萄糖(N-乙酰基奎诺糖胺,DQuiNAc)、2-乙酰氨基-2,6-二脱氧-D-半乳糖(N-乙酰基岩藻糖胺,DFucNAc)以及5-乙酰氨基-3,5,7,9-四脱氧-7-[(R)-3-羟基丁酰胺基]-L-甘油-L-甘露-壬糖醛酸。后者是一种新型唾液酸样糖的二-N-酰基衍生物,我们将其命名为假氨基糖(PseN2)。3-羟基丁酸残基也是首次在天然碳水化合物中被发现。在O10a,b多糖中,假氨基糖在4位带有一个O-乙酰基。为了选择性裂解O10a多糖,采用了氟化氢溶剂解反应,由于假氨基糖糖苷键相对较高的稳定性,该反应生成了在非还原端带有这种糖的二糖。在甲醇中进行溶剂解反应得到了这种二糖的甲基糖苷,事实证明它更有利于进一步分析。羧基还原使假氨基糖的糖苷键变得极其不稳定,对羧基还原后的010a多糖进行温和酸水解,得到了在还原端带有酮糖衍生物的三糖。确定所得寡糖片段的结构并解释多糖的13C核磁共振谱,从而确定了其重复单元的如下结构:(分子式:见原文)在多糖中,N-乙酰基奎诺糖胺残基并非连接到假氨基糖本身,而是连接到其N-酰基取代基3-羟基丁酰基上,因此单体通过糖苷键和酰胺键相连。

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