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将形成链间二硫键的氨基酸A7和B7替换为谷氨酸会损害胰岛素的结构和活性。

Replacement of the interchain disulfide bridge-forming amino acids A7 and B7 by glutamate impairs the structure and activity of insulin.

作者信息

Guo Zhan-Yun, Jia Xiao-Yuan, Feng You-Min

机构信息

Key Laboratory of Proteomics, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, The Chinese Academy of Sciences, Shanghai 200031, PR China.

出版信息

Biol Chem. 2004 Dec;385(12):1171-5. doi: 10.1515/BC.2004.151.

Abstract

Insulin contains three disulfide bonds, one intrachain bond, A6-A11, and two interchain bonds, A7-B7 and A20-B19. Site-directed mutagenesis results (the two cysteine residues of disulfide A7-B7 were replaced by serine) showed that disulfide A7-B7 is crucial to both the structure and activity of insulin. However, chemical modification results showed that the insulin analogs still retained relatively high biological activity when A7Cys and B7Cys were modified by chemical groups with a negative charge. Did the negative charge of the modification groups restore the loss of activity and/or the disturbance of structure of these insulin analogs caused by deletion of disulfide A7-B7? To answer this question, an insulin analog with both A7Cys and B7Cys replaced by Glu, which has a long side-chain and a negative charge, was prepared by protein engineering, and its structure and activity were analyzed. Both the structure and activity of the present analog are very similar to that of the mutant with disulfide A7-B7 replaced by Ser, but significantly different from that of wild-type insulin. The present results suggest that removal of disulfide A7-B7 will result in serious loss of biological activity and the native conformation of insulin, even if the disulfide is replaced by residues with a negative charge.

摘要

胰岛素含有三个二硫键,一个链内键,A6-A11,以及两个链间键,A7-B7和A20-B19。定点诱变结果(二硫键A7-B7的两个半胱氨酸残基被丝氨酸取代)表明,二硫键A7-B7对胰岛素的结构和活性都至关重要。然而,化学修饰结果表明,当A7Cys和B7Cys被带负电荷的化学基团修饰时,胰岛素类似物仍保留相对较高的生物活性。修饰基团的负电荷是否恢复了由二硫键A7-B7缺失导致的这些胰岛素类似物的活性丧失和/或结构紊乱?为了回答这个问题,通过蛋白质工程制备了一种A7Cys和B7Cys都被Glu取代的胰岛素类似物,Glu具有长侧链和负电荷,并对其结构和活性进行了分析。本类似物的结构和活性与二硫键A7-B7被Ser取代的突变体非常相似,但与野生型胰岛素有显著差异。目前的结果表明,去除二硫键A7-B7将导致胰岛素生物活性和天然构象的严重丧失,即使该二硫键被带负电荷的残基取代。

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