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大鼠小肠绒毛细胞中膜糖蛋白的合成。秋水仙碱对L-[1,5,6-³H]岩藻糖标记的膜糖蛋白在高尔基体、侧基底膜和微绒毛膜之间重新分布的影响。

Synthesis of membrane glycoproteins in rat small-intestinal villus cells. Effect of colchicine on the redistribution of L-[1,5,6-3H]fucose-labelled membrane glycoproteins among Golgi, lateral basal and microvillus membranes.

作者信息

Quaroni A, Kirsch K, Weiser M M

出版信息

Biochem J. 1979 Jul 15;182(1):213-21. doi: 10.1042/bj1820213.

Abstract

To define the role of cytoplasmic microtubules in the biogenesis of plasmalemma glycoproteins of rat small-intestinal villus cells, we studied the effect of colchicine on the incorporation of L-[1,5,6-3H]fucose into Golgi, lateral basal and microvillus membranes. Colchicine was administered intraperitoneally before or after injection of radioactive fucose. The incorporation of radioactivity into Golgi membranes was little affected by colchicine, which did not prevent the redistribution of most of the labelled glycoproteins from the Golgi complex into other parts of the villus cell. The incorporation of labelled glycoproteins into the microvillus membrane was greatly inhibited by colchicine given 2 h or 10 min before the radioactive fucose: all labelled glycoproteins present in this membrane were equally affected. In contrast, the administration of colchicine considerably increased the incorporation of radioactivity into the lateral basal part of the plasmalemma, and prevented the disappearance of most of the labelled glycoproteins from this membrane at late times after fucose injection. These results suggest that cytoplasmic microtubular structures are important for the polarization of the intestinal villus cell and the biogenesis of the microvillus membrane, although playing little or no role in the movement of membrane components from the Golgi complex to the lateral basal part of the plasmalemma.

摘要

为了确定细胞质微管在大鼠小肠绒毛细胞质膜糖蛋白生物合成中的作用,我们研究了秋水仙碱对L-[1,5,6-³H]岩藻糖掺入高尔基体、侧基膜和微绒毛膜的影响。在注射放射性岩藻糖之前或之后腹腔注射秋水仙碱。秋水仙碱对放射性物质掺入高尔基体膜的影响很小,它并不能阻止大多数标记糖蛋白从高尔基体复合体重新分布到绒毛细胞的其他部位。在注射放射性岩藻糖前2小时或10分钟给予秋水仙碱,可极大地抑制标记糖蛋白掺入微绒毛膜:该膜中存在的所有标记糖蛋白均受到同等影响。相反,给予秋水仙碱可显著增加放射性物质掺入质膜侧基部的量,并在注射岩藻糖后的后期阻止该膜中大多数标记糖蛋白的消失。这些结果表明,细胞质微管结构对肠绒毛细胞的极化和微绒毛膜的生物合成很重要,尽管在膜成分从高尔基体复合体向质膜侧基部的移动中作用很小或没有作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caec/1161251/3e936b10674c/biochemj00456-0218-a.jpg

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