脱氮人转铁蛋白碳水化合物部分的结构异质性。

L März, M W Hatton, L R Berry, E Regoeczi
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引用次数: 80

摘要

人转铁蛋白由单链多肽组成,该多肽支持序列a和b上的两个n -糖苷连接的聚糖。糖肽通过蛋白水解从人转铁蛋白中释放出来,通过温和的酸水解去盐化,然后通过色谱方法分离。每个序列上的聚糖的结构通过史密斯降解、过甲基化和酶降解等分析技术的组合来确定。正如Dorland和他的同事先前所描述的那样,序列a中大约79%的多糖是双天线型(FEBS Lett. 77, 15-20(1977))。剩下的21%由三天线和四天线聚糖的混合物组成,每一个约占该序列总聚糖的10%。三触角结构类似于Nilsson和他的同事描述的牛胎儿蛋白的n -糖苷三触角聚糖(J. Biol。化学,254,4545-4553(1979))。在四天线聚糖中,大约一半的结构是不完整的,即一个天线被n -乙酰氨基葡萄糖终止。在序列b上,81%的聚糖是双触角的,与序列a的双触角聚糖相同,提醒物是三触角的,也是胎儿蛋白型的。多糖结构及其在多肽上的位置与已知的人转铁蛋白亚群有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The structural heterogeneity of the carbohydrate moiety of desialylated human transferrin.
Human transferrin consists of a single chain polypeptide which supports two N-glycosidically linked glycans at sequons a and b. Glycopeptides were released from human transferrin by proteolytic digestion, desialylated by mild acid hydrolysis, and then isolated by chromatographic methods. The structures of the glycans located on each sequon were determined by a combination of analytical techniques including Smith degradation, permethylation, and enzymic degradation. Approximately 79% of the total glycan from sequon a was of the biantennary type as previously described by Dorland and his colleagues (FEBS Lett. 77, 15-20 (1977)). The remaining 21% consisted of a mixture of triantennary and tetraantennary glycans, each amounting to approximately 10% of the total glycan for this sequon. The triantennary structure resembled that described for the N-glycosidic triantennary glycans of bovine fetuin by Nilsson and his colleagues (J. Biol. Chem. 254, 4545-4553 (1979)). Of the tetraantennary glycan, approximately half of the structures were incomplete, i.e., one antenna terminated by N-acetylglucosamine. On sequon b, 81% of the glycan was biantennary, identical to those biantennary glycans of sequon a, and the reminder was triantennary, also of the fetuin type. The glycan structures and their locations on the polypeptide are related to the known subpopulations of human transferrin.
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