Koerner T A, Cary L W, Li S C, Li Y T
Biochem J. 1981 Jun 1;195(3):529-33. doi: 10.1042/bj1950529.
The 13C n.m.r. spectrum of Forssman hapten was obtained at 25.16 MHz in [3H] chloroform/[2H] methanol (1:1, v/v), using purified glycosphinogolipid from canine intestinal mucosa (glycolipid I). All amide, olefin, anomeric, intersaccharide glycosidic ether, amide linkage, methyl and many methylene resonances were resolved and assigned. Analysis of the anomeric region reveals the following pentaglycosylceramide structure as originally proposed [Siddiqui & Hakomori (1971) J. Biol. Chem. 246, 5766-5769]: GalNAc (alpha 1 leads to 3) GalNAc (beta 1 leads to 3) Gal (alpha 1 leads to 4) Gal (beta 1 leads to 1) ceramide. Analysis of the amide, olefin and methylene regions reveals no alpha-hydroxy fatty acyl group and less than or equal to 6 mol% unsaturated fatty acyl groups are present. Chemical-shift assignments are reported for the anomeric and glycosidic ether carbon atoms of intersaccharide-linked alpha-galactose and N-acetyl-alpha-galactosamine residues. Two rules are proposed for the assignment of the anomeric form of 1 leads to 3 and 1 leads to 4 linkages of galactose and N-acetylgalactosamine residues present in the glycone of glyco-conjugates. The present study emphasizes the importance of the anomeric "window" (80-120 p.p.m.) in studies of glycone structure.
福斯曼半抗原的13C核磁共振谱是在25.16兆赫兹下于[3H]氯仿/[2H]甲醇(1:1,v/v)中获得的,使用的是从犬小肠黏膜纯化得到的糖鞘脂(糖脂I)。所有酰胺、烯烃、端基异构、糖间糖苷醚、酰胺键、甲基和许多亚甲基共振峰都得到了解析和归属。对端基异构区域的分析揭示了如下最初提出的五糖基神经酰胺结构[Siddiqui & Hakomori (1971) J. Biol. Chem. 246, 5766 - 5769]:GalNAc(α1→3)GalNAc(β1→3)Gal(α1→4)Gal(β1→1)神经酰胺。对酰胺、烯烃和亚甲基区域的分析表明不存在α-羟基脂肪酰基,且不饱和脂肪酰基的含量小于或等于6摩尔%。报道了糖间连接的α-半乳糖和N-乙酰-α-半乳糖胺残基的端基异构和糖苷醚碳原子的化学位移归属。提出了两条规则,用于确定糖缀合物糖部分中半乳糖和N-乙酰半乳糖胺残基1→3和1→4连接的端基异构形式。本研究强调了端基异构“窗口”(80 - 120 ppm)在糖结构研究中的重要性。