Mato J M, Kelly K L, Abler A, Jarett L
J Biol Chem. 1987 Feb 15;262(5):2131-7.
This study identifies and partially characterizes an insulin-sensitive glycophospholipid in H35 hepatoma cells. The incorporation of [3H]glucosamine into cell lipids was investigated. A major labeled lipid was purified by sequential thin layer chromatography using first an acid followed by a basic solvent system. After hydrochloric acid hydrolysis and sugar analysis by thin layer chromatography, 80% of the radioactivity in the purified lipid was found to comigrate with glucosamine. H35 cells were prelabeled with [3H]glucosamine for either 4 or 24 h and treated with insulin causing a dose-dependent stimulation of turnover of the glycophospholipid which was detected within 1 min. The purified glycolipid was cleaved by nitrous acid deamination indicating that the glucosamine C-1 was linked to the lipid moiety through a glycosidic bond. [14C]Ethanolamine, [3H]inositol, and [3H]sorbitol were not incorporated into the purified glycolipid. The incorporation of various fatty acids into this glycolipid was also studied. [3H]Palmitate was found to be preferentially incorporated while myristic acid, stearic acid, oleic acid, linoleic acid, linolenic acid, and arachidonic acid were either not incorporated or incorporated less than 10% of palmitate. The purified glycolipid labeled with [3H]palmitate was cleaved by treatment with phospholipase A2 but was resistant to mild alkali hydrolysis suggesting the presence of a 1-hexadecyl,2-palmitoyl-glyceryl moiety in the purified lipid. Treatment of labeled glycophospholipid with phosphatidylinositol-specific phospholipase C from Staphylococcus aureus generated a compound migrating as 1-alkyl,2-acyl-glycerol and a polar head group with a size in the range from 800 to 3500. These findings coupled with the nitrous acid deamination demonstrate that glucosamine was covalently linked through a phosphodiester bond to the glyceryl moiety of the purified glycolipid. These findings suggest that insulin acts on this glycophospholipid by stimulating an insulin-sensitive phospholipase C. This unique glycophospholipid may play an important role in insulin action by serving as precursor of insulin-generated mediators.
本研究鉴定并部分表征了H35肝癌细胞中的一种胰岛素敏感糖磷脂。研究了[3H]葡萄糖胺掺入细胞脂质的情况。一种主要的标记脂质通过连续薄层层析进行纯化,首先使用酸性溶剂系统,然后使用碱性溶剂系统。经过盐酸水解和薄层层析糖分析后,发现纯化脂质中80%的放射性与葡萄糖胺共迁移。H35细胞用[3H]葡萄糖胺预标记4或24小时,并用胰岛素处理,导致糖磷脂周转呈剂量依赖性刺激,在1分钟内即可检测到。纯化的糖脂经亚硝酸脱氨裂解,表明葡萄糖胺C-1通过糖苷键与脂质部分相连。[14C]乙醇胺、[3H]肌醇和[3H]山梨醇未掺入纯化的糖脂中。还研究了各种脂肪酸掺入这种糖脂的情况。发现[3H]棕榈酸优先掺入,而肉豆蔻酸、硬脂酸、油酸、亚油酸、亚麻酸和花生四烯酸要么未掺入,要么掺入量不到棕榈酸的10%。用磷脂酶A2处理标记有[3H]棕榈酸的纯化糖脂可使其裂解,但对温和碱水解具有抗性,表明纯化脂质中存在1-十六烷基、2-棕榈酰甘油部分。用来自金黄色葡萄球菌的磷脂酰肌醇特异性磷脂酶C处理标记的糖磷脂,产生一种迁移为1-烷基、2-酰基甘油的化合物和一个大小在800至3500范围内的极性头部基团。这些发现与亚硝酸脱氨结果表明,葡萄糖胺通过磷酸二酯键与纯化糖脂的甘油部分共价相连。这些发现表明,胰岛素通过刺激胰岛素敏感的磷脂酶C作用于这种糖磷脂。这种独特的糖磷脂可能作为胰岛素生成介质的前体,在胰岛素作用中发挥重要作用。