Sherwood A L, Holmes E H
Pacific Northwest Research Foundation, Seattle, Washington 98122.
J Biol Chem. 1992 Dec 15;267(35):25328-36.
De novo synthesis of neolacto-series glycolipids has been studied in human cell lines via metabolic labeling of ceramide with [3H]serine. Intense labeling of ceramide mono- and dihexoside glycolipids occurred with labeling of progressively longer chain derivatives with increasing time. Most of the label was recovered in neutral glycolipids with about 5% of the total labeling in the ganglioside fraction. Experiments done using cell treatment with 2.5 micrograms/ml brefeldin A resulted in a stimulation in the total amount of labeling, accumulation of a neutral glycolipid identified as Lc3 due to inhibited transfer of the neolacto-series core chain terminal beta-Gal residue, and a corresponding inhibition of labeling of longer chain neutral glycolipids in all cell lines. Brefeldin A also blocked synthesis of the globo-series precursor, Gb3, longer chain sialylated structures such as IV3NeuAcnLc4, but not de novo GM3 synthesis. Brefeldin A treatment had no effect on cellular beta 1-->3N-acetylglucosaminyl-, beta 1-->4galactosyl-, or alpha 1-->3fucosyltransferase specific activities, nor was it inhibitory in beta 1-->4galactosyltransferase assays in vitro. The results describe brefeldin A-induced blocks in globo- and neolacto-series glycolipid biosynthesis, consistent with differential localization of enzymes in intracellular membranes. In particular, the results suggest that the beta 1-->4galactosyltransferase in these cells is either not redistributed by brefeldin A or is otherwise rendered nonfunctional.
通过用[3H]丝氨酸对神经酰胺进行代谢标记,在人细胞系中研究了新乳糖系列糖脂的从头合成。神经酰胺单己糖苷和二己糖苷糖脂出现强烈标记,随着时间增加,标记的链衍生物逐渐变长。大部分标记物在中性糖脂中回收,神经节苷脂部分的标记物占总标记物的约5%。用2.5微克/毫升布雷菲德菌素A处理细胞的实验导致标记总量增加,由于新乳糖系列核心链末端β-半乳糖残基的转移受到抑制,一种被鉴定为Lc3的中性糖脂积累,并且所有细胞系中长链中性糖脂的标记相应受到抑制。布雷菲德菌素A还阻断了球系列前体Gb3、长链唾液酸化结构如IV3NeuAcnLc4的合成,但不影响GM3的从头合成。布雷菲德菌素A处理对细胞β1→3-N-乙酰葡糖胺基转移酶、β1→4-半乳糖基转移酶或α1→3-岩藻糖基转移酶的比活性没有影响,在体外β1→4-半乳糖基转移酶测定中也没有抑制作用。结果描述了布雷菲德菌素A诱导的球系列和新乳糖系列糖脂生物合成的阻断,这与酶在细胞内膜中的差异定位一致。特别是,结果表明这些细胞中的β1→4-半乳糖基转移酶要么没有被布雷菲德菌素A重新分布,要么以其他方式失去功能。