Sonnino S, Ghidoni R, Gazzotti G, Kirschner G, Galli G, Tettamanti G
J Lipid Res. 1984 Jun;25(6):620-9.
A semi-preparative, analytical high performance liquid chromatographic (HPLC) procedure is described for the isolation of molecular species of GM1 and GD1a gangliosides containing a single long chain base, C18 or C20 sphingosine, C18 or C20 sphinganine, each in its natural erythro or unnatural threo form. The threo forms were obtained from 2,3-dichloro-5,6-dicyanobenzoquinone/NaBH4 -treated gangliosides. The ganglioside molecular species separated by HPLC were analyzed for carbohydrate, fatty acid, and long chain base composition. In particular, long chain bases were submitted to gas-liquid chromatographic-mass spectrometric analyses as their trimethylsilyl (TMS) or N-acetyl-TMS derivatives, and chain length, presence or absence of C4-C5 double bond, and C-3 steric configuration were ascertained. The final preparations of individual molecular species of GM1 and GD1a gangliosides were more than 99% homogeneous in their saccharide moiety, contained a single long chain base (homogeneity higher than 99%), and had a fatty acid composition primarily of stearic acid (92 to 97%). All the individual molecular species of GM1 and GD1a gangliosides were also prepared in radioactive form by selective tritiation at C-3 of the long chain base. Their specific radioactivity ranged from 1.3 to 1.45 Ci/mmol. The availability of these molecular species of gangliosides is expected to facilitate studies aimed at ascertaining the role played by the hydrophobic portion in the functional behavior of gangliosides.
本文描述了一种半制备、分析型高效液相色谱(HPLC)方法,用于分离含有单个长链碱基、C18或C20鞘氨醇、C18或C20二氢鞘氨醇的GM1和GD1a神经节苷脂的分子种类,每种均为天然的赤藓糖型或非天然的苏阿糖型。苏阿糖型是通过2,3 - 二氯 - 5,6 - 二氰基苯醌/硼氢化钠处理的神经节苷脂获得的。对通过HPLC分离的神经节苷脂分子种类进行了碳水化合物、脂肪酸和长链碱基组成分析。特别是,长链碱基以其三甲基硅烷基(TMS)或N - 乙酰 - TMS衍生物的形式进行气液色谱 - 质谱分析,确定了链长、C4 - C5双键的有无以及C - 3立体构型。GM1和GD1a神经节苷脂单个分子种类的最终制剂在其糖部分的纯度超过99%,含有单个长链碱基(纯度高于99%),并且脂肪酸组成主要为硬脂酸(92%至97%)。GM1和GD1a神经节苷脂的所有单个分子种类还通过在长链碱基的C - 3处选择性氚化制备成放射性形式。它们的比放射性范围为1.3至1.45 Ci/mmol。这些神经节苷脂分子种类的可得性有望促进旨在确定疏水部分在神经节苷脂功能行为中所起作用的研究。