Neuenhofer S, Schwarzmann G, Egge H, Sandhoff K
Biochemistry. 1985 Jan 15;24(2):525-32. doi: 10.1021/bi00323a042.
The synthesis of gangliosides GM3, GM2, GM1, and GD1a solely lacking the fatty acid moiety, and thus called lysogangliosides in analogy to lysophospholipids, is described. Since a selective elimination of the fatty acid residue has not been achieved as yet, the gangliosides were first subjected to alkaline hydrolysis. By this procedure the fatty acyl as well as the acetyl groups of the sialic acid residue(s) were completely removed. The acetamido group of the N-acetylgalactosamine moiety of the gangliosides GM2, GM1, and GD1a was very little (congruent to 10%) hydrolyzed. In a two-phase system composed of water and ether, the selective protection of the sphingoid amino group was accomplished with a hydrophobic protective group (9-fluorenylmethoxycarbonyl). Lysogangliosides were obtained after re-N-acetylation of the sialooligosaccharide amino group(s) followed by removal of the protecting group. The overall yield was about 30%. The structures of the lysogangliosides were confirmed by chemical analysis as well as negative ion FAB mass spectrometry and 1H NMR spectroscopy. By simple re-N-acylation of lysogangliosides with any labeled fatty acid, labeled gangliosides are now obtainable that are identical with their parent gangliosides except for their labeled fatty acid residue. This has been demonstrated by the synthesis of GM1 with a [1-13C]palmitic acid moiety in its ceramide portion. If desired, double-labeled gangliosides may be obtained by use of labeled acetic anhydride in the synthesis of the lysogangliosides.
本文描述了神经节苷脂GM3、GM2、GM1和GD1a的合成,这些神经节苷脂仅缺少脂肪酸部分,因此类似于溶血磷脂被称为溶血神经节苷脂。由于尚未实现脂肪酸残基的选择性去除,因此首先对神经节苷脂进行碱性水解。通过该程序,脂肪酸酰基以及唾液酸残基的乙酰基被完全去除。神经节苷脂GM2、GM1和GD1a的N-乙酰半乳糖胺部分的乙酰氨基很少(约10%)被水解。在由水和乙醚组成的两相体系中,用疏水性保护基团(9-芴甲氧羰基)实现了鞘氨醇氨基的选择性保护。在唾液寡糖氨基重新N-乙酰化后,去除保护基团,得到溶血神经节苷脂。总产率约为30%。通过化学分析以及负离子FAB质谱和1H NMR光谱证实了溶血神经节苷脂的结构。通过用任何标记的脂肪酸对溶血神经节苷脂进行简单的重新N-酰化,现在可以获得标记的神经节苷脂,除了其标记的脂肪酸残基外,它们与其母体神经节苷脂相同。这已通过在其神经酰胺部分合成具有[1-13C]棕榈酸部分的GM1得到证明。如果需要,可以在溶血神经节苷脂的合成中使用标记的乙酸酐获得双标记的神经节苷脂。