Hunter S W, Fujiwara T, Brennan P J
J Biol Chem. 1982 Dec 25;257(24):15072-8.
Earlier we reported on the presence of a specific phenolic glycolipid (Phenolic Glycolipid-I) in Mycobacterium leprae, and in infected armadillo tissues (Hunter, S. W., and Brennan, P. J. (1981) J. Bacteriol. 147, 728-735). It had an inherent oligosaccharide, composed of 3-O-Me-rhamnose, 2,3-di-O-Me-rhamnose, and 3,6-di-O-Me-glucose, glycosidically linked to the phenol substituent. The structure of the oligosaccharide has now been determined, by partial acid hydrolysis, permethylation, 1H NMR, and 13C NMR as: 3,6-di-O-Me-Glcp(1 beta leads to 4)2,3-di-O-Me-Rhap(1 alpha leads to 2)3-O-Me-Rhap1 alpha leads to phenol (assuming that the glucose substituent is in the D-enantiomeric configuration, and the two methylated rhamnoses are L). Acid hydrolysis of deacylated Phenolic glycolipid-I yielded a phenolic phthiocerol "core," and mass spectrometry and proton NMR of the permethylated core suggested the following structure: (formula, see text) Combined gas-liquid chromatography-mass spectrometry showed three tetramethyl branched "mycocerosic" acids, C30, C32 and C34, with molecular weights (as methyl esters) of 466, 494, and 522, respectively. These are esterified to the hydroxyl functions of the branched glycolic chain. Evidence is also presented that the glycolipid is immunologically active, reacting with rabbit antisera to M. leprae and with sera from lepromatous leprosy patients.
此前我们报道了麻风分枝杆菌及受感染犰狳组织中存在一种特定的酚糖脂(酚糖脂-I)(Hunter, S. W., and Brennan, P. J. (1981) J. Bacteriol. 147, 728 - 735)。它含有一个固有寡糖,由3 - O - 甲基鼠李糖、2,3 - 二 - O - 甲基鼠李糖和3,6 - 二 - O - 甲基葡萄糖组成,通过糖苷键连接到酚取代基上。现在已通过部分酸水解、全甲基化、1H NMR和13C NMR确定了该寡糖的结构为:3,6 - 二 - O - 甲基 - Glcp(1β→4)2,3 - 二 - O - 甲基 - Rhap(1α→2)3 - O - 甲基 - Rhap1α→酚(假设葡萄糖取代基为D - 对映体构型,且两个甲基化鼠李糖为L构型)。脱酰基酚糖脂 - I的酸水解产生了一个酚基硫脂醇“核心”,全甲基化核心的质谱和质子NMR表明其结构如下:(分子式,见原文)气相色谱 - 质谱联用显示有三种四甲基支链的“霉菌酸”,C30、C32和C34,其分子量(作为甲酯)分别为466、494和522。这些与支链二醇链的羟基功能酯化。还提供了证据表明该糖脂具有免疫活性,可与兔抗麻风分枝杆菌抗血清以及瘤型麻风患者的血清发生反应。