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链霉蛋白酶和神经氨酸酶处理对发育中大脑髓鞘相关糖蛋白的影响。

Effects of pronase and neuraminidase treatment on a myelin-associated glycoprotein in developing brain.

作者信息

Quarles R H

出版信息

Biochem J. 1976 Apr 15;156(1):143-50. doi: 10.1042/bj1560143.

Abstract

Rats (14 days old) were injected with [14c]fucose and young adult rats with [3H]fucose in order to label the myelin-associated glycoproteins. As previously reported, the major [14C]fucose-labelled glycoprotein in the immature myelin had a higher apparent molecular weight on sodium dodecyl sulphate/polyacrylamide gels that the [3H]fucose-labelled glycoprotein in mature myelin. This predominant doubly labelled glycoprotein component was partially purified by preparative gel electrophoresis and converted to glycopeptides by extensive Pronase digestion. Gel filtration on Sephadex G-50 separated the glycopeptides into several clases, which were designted A,B, C AND D, from high to low molecular weight. The 14C-labelled glycopeptides from immature myeline were enriched in the highest-molecular-weight class A relative to the 3H-labelled glycopeptides from mature myelin. Neuraminidase treatment of the glycoprotein before Pronase digestion greatly decreased the proportion of glycopeptides fractionating in the higher-molecular-weight classes and largely eliminated the developmental differences that were apparent by gel filtration. However, neuraminidase treatment did not decrease the magnitude of the developmental difference revealed by electrophoresing the intact glycoprotein on sodium dodecyl sulphate gels, although it did decrease the apparent molecular weight of the glycoprotein from both the 15-day-old and adult rats by an amount comparable in magnitude to that developmental difference. The results from gel filtration of glycopeptides indicate that there is a higher content of large molecular weight, sialic acid-rich oligosaccharide units in the glycoprotein of immature myelin. However, the higher apparent molecular weight for the glycoprotein from 15-day-old rats on sodium dodcyl sulphate gels is not due primarily to its higher sialic acid content.

摘要

给14日龄的大鼠注射[14C]岩藻糖,给成年大鼠注射[3H]岩藻糖,以便标记髓鞘相关糖蛋白。如先前报道,未成熟髓鞘中主要的[14C]岩藻糖标记糖蛋白在十二烷基硫酸钠/聚丙烯酰胺凝胶上的表观分子量比成熟髓鞘中[3H]岩藻糖标记糖蛋白的高。通过制备性凝胶电泳对这种主要的双标记糖蛋白成分进行部分纯化,并通过广泛的链霉蛋白酶消化将其转化为糖肽。在Sephadex G-50上进行凝胶过滤,将糖肽分离成几类,从高到低分子量分别命名为A、B、C和D。相对于成熟髓鞘的[3H]标记糖肽,未成熟髓鞘的14C标记糖肽在最高分子量的A类中富集。在链霉蛋白酶消化之前用神经氨酸酶处理糖蛋白,大大降低了在较高分子量类别中分级的糖肽比例,并基本消除了通过凝胶过滤明显的发育差异。然而,神经氨酸酶处理并没有降低在十二烷基硫酸钠凝胶上对完整糖蛋白进行电泳所显示的发育差异的幅度,尽管它确实使15日龄和成年大鼠的糖蛋白表观分子量降低了一个与该发育差异幅度相当的量。糖肽凝胶过滤的结果表明,未成熟髓鞘糖蛋白中高分子量、富含唾液酸的寡糖单元含量较高。然而,15日龄大鼠糖蛋白在十二烷基硫酸钠凝胶上较高的表观分子量主要不是由于其较高的唾液酸含量。

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