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脑毛细血管和脉络丛中葡萄糖转运蛋白1(GLUT1)的糖基化差异

Differential glycosylation of the GLUT1 glucose transporter in brain capillaries and choroid plexus.

作者信息

Kumagai A K, Dwyer K J, Pardridge W M

机构信息

Department of Medicine, UCLA School of Medicine 90024.

出版信息

Biochim Biophys Acta. 1994 Jul 13;1193(1):24-30. doi: 10.1016/0005-2736(94)90328-x.

Abstract

The sodium-independent GLUT1 glucose transporter is expressed in high density in human erythrocytes and in tissues which serve a barrier function. In the polarized endothelial cells of the brain capillaries, which comprise the blood-brain barrier (BBB), GLUT1 is expressed on both apical and basolateral membranes; however, in the epithelium of the choroid plexus, GLUT1 expression is restricted to the basolateral surface. The present study examined whether these differences in subcellular localization of GLUT1 at the BBB and choroid plexus could be correlated with differential N-linked or O-linked glycosylation of the protein. Western blot analysis of solubilized brain capillaries (BC) and choroid plexus (CP) revealed that while the BC GLUT1 had an average molecular mass identical to that of the purified human erythrocyte transporter (54 kDa), the CP GLUT1 was of lower molecular mass (47 kDa). Treatment of brain capillaries and choroid plexus with N-glycanase resulted in a shift in the mobility of the GLUT1 of both samples to a lower molecular mass of 42 kDa; however, in contrast, treatment with O-glycanase produced no change in the mobility patterns of GLUT1, but did result in O-linked deglycosylation of another BBB marker, gamma-glutamyl transpeptidase. In conclusion, BBB and choroid plexus GLUT1 are subject to differential N-linked glycosylation with the protein having an N-linked carbohydrate side chain of higher molecular mass at the BBB in comparison to the choroid plexus.

摘要

不依赖钠的葡萄糖转运蛋白1(GLUT1)在人类红细胞以及具有屏障功能的组织中高表达。在构成血脑屏障(BBB)的脑毛细血管的极化内皮细胞中,GLUT1在顶端膜和基底外侧膜均有表达;然而,在脉络丛上皮中,GLUT1的表达仅限于基底外侧表面。本研究检测了BBB和脉络丛中GLUT1亚细胞定位的这些差异是否与该蛋白不同的N - 连接或O - 连接糖基化相关。对可溶性脑毛细血管(BC)和脉络丛(CP)的蛋白质免疫印迹分析显示,虽然BC的GLUT1平均分子量与纯化的人类红细胞转运蛋白相同(54 kDa),但CP的GLUT1分子量较低(47 kDa)。用N - 聚糖酶处理脑毛细血管和脉络丛导致两个样品中GLUT1的迁移率向较低分子量的42 kDa转变;然而,相比之下,用O - 聚糖酶处理并没有改变GLUT1的迁移模式,但确实导致了另一个BBB标志物γ - 谷氨酰转肽酶的O - 连接去糖基化。总之,BBB和脉络丛的GLUT1存在不同的N - 连接糖基化,与脉络丛相比,BBB处该蛋白具有分子量更高的N - 连接碳水化合物侧链。

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