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膜结合视紫红质碳水化合物部分对酶促和化学修饰的可及性。

Accessibility of the carbohydrate moiety of membrane-boound rhodopsin to enzymatic and chemical modification.

作者信息

Shaper J H, Stryer L

出版信息

J Supramol Struct. 1977;6(3):291-9. doi: 10.1002/jss.400060302.

Abstract

Galactose was specifically inserted into the carbohydrate moiety of rhodopsin by incubating retinal disk membranes with UDP-galactose: N-acetylglucosamine galactosyltransferase. The stoichiometry of labeling ranged from 1.2 to 1.8 (average = 1.5) residues of galactose per molecule of rhodopsin, indicating that some or all of the oligosaccharide chains of membrane-bound rhodopsin are readily accessible to enzymatic modification. These modified membranes were treated with galactose oxidase to generate an aldehyde at the C-6 position of the inserted galactose units. The enzymatically-oxidized membranes were then reacted with dansyl hydrazide to yield a fluorescent hydrazone which is sufficiently stable to permit spectroscopic analysis. This procedure for the specific attachment of a spectroscopic probe should be applicable to a wide variety of membrane glycoproteins.

摘要

通过用UDP-半乳糖:N-乙酰葡糖胺半乳糖基转移酶孵育视网膜盘膜,将半乳糖特异性插入视紫红质的碳水化合物部分。标记的化学计量比为每分子视紫红质1.2至1.8个半乳糖残基(平均 = 1.5),这表明膜结合视紫红质的一些或所有寡糖链易于进行酶促修饰。这些修饰的膜用半乳糖氧化酶处理,在插入的半乳糖单元的C-6位置生成醛。然后将酶促氧化的膜与丹磺酰肼反应,生成一种荧光腙,其稳定性足以进行光谱分析。这种特异性连接光谱探针的方法应该适用于多种膜糖蛋白。

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