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轴突运输糖蛋白的差异性周转

Differential turnover of axonally transported glycoproteins.

作者信息

Ripellino J A, Elam J S

出版信息

Neurochem Res. 1980 Apr;5(4):351-60. doi: 10.1007/BF00964224.

Abstract

Metabolic turnover of axonally transported glycoproteins has been examined in membranous and soluble subfractions of goldfish optic tectum following intraocular injection of [3H]fucose. Radioactivity in total transported glycoproteins reached a maximum in the tectum after 24-30 hr, then declined with a half-life of approximately 20 days. Radioactivity in the total membranous subfraction declined with a similar half-life of 20-21 days while radioactivity in the soluble fraction showed a significantly shorter half-life of approximately seven days. Various sized glycopeptides derived from the membranous subfraction showed differential rates of loss of radioactivity with the lower molecular weight nondialyzable molecules displaying the most rapid turnover. In contrast, the glycopeptides derived from the soluble fraction showed relatively uniform rates of turnover. The results are discussed in the context of metabolic compartmentalization between membranous and soluble glycoproteins and among the carbohydrate chains of the membranous molecules.

摘要

在眼内注射[3H]岩藻糖后,对金鱼视顶盖的膜性和可溶性亚组分中轴突运输糖蛋白的代谢周转进行了研究。在24 - 30小时后,视顶盖中总运输糖蛋白的放射性达到最大值,然后以约20天的半衰期下降。总膜性亚组分中的放射性以20 - 21天的相似半衰期下降,而可溶性组分中的放射性显示出明显较短的约7天的半衰期。来自膜性亚组分的各种大小的糖肽显示出不同的放射性损失率,分子量较低的不可透析分子显示出最快的周转。相比之下,来自可溶性组分的糖肽显示出相对均匀的周转速率。在膜性和可溶性糖蛋白之间以及膜性分子的碳水化合物链之间的代谢区室化的背景下讨论了这些结果。

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