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从胰岛素刺激细胞的小窝和胞质溶胶中分离磷酸寡糖/磷酸肌醇聚糖。

Isolation of phosphooligosaccharide/phosphoinositol glycan from caveolae and cytosol of insulin-stimulated cells.

作者信息

Parpal S, Gustavsson J, Strålfors P

机构信息

Department of Cell Biology, Faculty of Health Sciences, University of Linköping, Sweden.

出版信息

J Cell Biol. 1995 Oct;131(1):125-35. doi: 10.1083/jcb.131.1.125.

Abstract

A phosphooligosaccharide has been proposed as a second messenger of insulin. It is believed to be structurally related to the carbohydrate moiety of phosphatidylinositol glycan anchors of many cell surface proteins. Herein we demonstrate that [32]phosphate in freshly isolated adipocytes and [3H]galactose in cultured hepatoma cells (H4IIE) labeled the same set of three different glycolipids. With all three, the radiolabel was made water soluble by phosphatidylinositol(glycan)-specific phospholipase C or D catalyzed hydrolysis. We isolated the three phospholipase C-released substances. One of them was susceptible to nitrous acid deamination, indicative of a hexosamine with a free amino group. This phosphooligosaccharide structure had an apparent molecular mass between tetra- and pentaglucose by gel filtration. By anion-exchange chromatography it was separated into two differently charged and interconvertible species. Adipocytes stimulated with insulin accumulated the nitrous acid sensitive phosphooligosaccharide: after stimulation the intracellular level of free phosphooligosaccharide increased threefold within 5 min, fell off during the next few minutes and then remained at a slightly elevated level. After insulin stimulation the intracellular concentration of free phosphooligosaccharide was > 1,000-fold higher than in the incubation medium. When prepared from rat livers on a preparative scale, the oligosaccharide was also found to exhibit insulinomimetic effects on protein phosphorylation of insulin target proteins in intact adipocytes. After subcellular fractionation of adipocytes the lipid-bound [32P]phosphooligosaccharide of the plasma membrane was found to be localized in plasma membrane domains apparently corresponding to caveolae. Lipid-bound [32P]phosphooligosaccharide was found also in the microsomal fraction.

摘要

一种磷酸寡糖被认为是胰岛素的第二信使。据信它在结构上与许多细胞表面蛋白的磷脂酰肌醇聚糖锚的碳水化合物部分相关。在此我们证明,新鲜分离的脂肪细胞中的[32]磷酸盐和培养的肝癌细胞(H4IIE)中的[3H]半乳糖标记了同一组三种不同的糖脂。对于所有这三种糖脂,放射性标记通过磷脂酰肌醇(聚糖)特异性磷脂酶C或D催化的水解而变得可溶于水。我们分离出了三种磷脂酶C释放的物质。其中一种易受亚硝酸脱氨作用影响,表明是一种带有游离氨基的己糖胺。通过凝胶过滤,这种磷酸寡糖结构的表观分子量在四糖和五糖之间。通过阴离子交换色谱,它被分离成两种带不同电荷且可相互转化的物质。用胰岛素刺激脂肪细胞会积累对亚硝酸敏感的磷酸寡糖:刺激后,游离磷酸寡糖的细胞内水平在5分钟内增加了三倍,在接下来的几分钟内下降,然后保持在略高的水平。胰岛素刺激后,游离磷酸寡糖的细胞内浓度比孵育培养基中的高1000倍以上。当从大鼠肝脏大规模制备时,还发现这种寡糖对完整脂肪细胞中胰岛素靶蛋白的蛋白质磷酸化具有胰岛素模拟作用。对脂肪细胞进行亚细胞分级分离后,发现质膜上与脂质结合的[32P]磷酸寡糖定位于明显对应于小窝的质膜结构域中。在微粒体部分也发现了与脂质结合的[32P]磷酸寡糖。

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