Chang Seung-Gu, Choi Ki-Doo, Jang Seung-Hwan, Shin Hang-Cheol
Department of Bioinformatics and Life Science, Soongsil University, Seoul 156-743, Korea.
Mol Cells. 2003 Dec 31;16(3):323-30.
Insulin contains two inter-chain disulfide bonds between the A and B chains (A7-B7 and A20-B19), and one intra-chain linkage in the A chain (A6-A11). To investigate the role of each disulfide bond in the structure, function and stability of the molecule, three des mutants of human insulin, each lacking one of the three disulfide bonds, were prepared by enzymatic conversion of refolded mini-proinsulins. Structural and biological studies of the three des mutants revealed that all three disulfide bonds are essential for the receptor binding activity of insulin, whereas the different disulfide bonds make different contributions to the overall structure of insulin. Deletion of the A20-B19 disulfide bond had the most substantial influence on the structure as indicated by loss of ordered secondary structure, increased susceptibility to proteolysis, and markedly reduced compactness. Deletion of the A6-A11 disulfide bond caused the least perturbation to the structure. In addition, different refolding efficiencies between the three des mutants suggest that the disulfide bonds are formed sequentially in the order A20-B19, A7-B7 and A6-A11 in the folding pathway of proinsulin.
胰岛素在A链和B链之间含有两个链间二硫键(A7-B7和A20-B19),在A链中有一个链内连接(A6-A11)。为了研究每个二硫键在分子结构、功能和稳定性中的作用,通过对重折叠的微型胰岛素原进行酶促转化,制备了三种人胰岛素的des突变体,每种突变体都缺少三个二硫键中的一个。对这三种des突变体的结构和生物学研究表明,所有三个二硫键对于胰岛素的受体结合活性都是必不可少的,而不同的二硫键对胰岛素的整体结构有不同的贡献。如有序二级结构的丧失、对蛋白水解的敏感性增加以及紧密性明显降低所示,删除A20-B19二硫键对结构的影响最大。删除A6-A11二硫键对结构的扰动最小。此外,三种des突变体之间不同的重折叠效率表明,在胰岛素原的折叠途径中,二硫键按A20-B19、A7-B7和A6-A11的顺序依次形成。