Guo Z Y, Feng Y M
State Key Laboratory of Molecular Biology, Shanghai Institute of Biochemistry, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, People's Republic of China.
Biol Chem. 2001 Mar;382(3):443-8. doi: 10.1515/BC.2001.054.
Using site-directed mutagenesis we deleted the two inter-chain disulfide bonds of insulin, separately or both, by substitution of the cysteine residues with serine. Deletion of A20-B19 or both of the two inter-chain disulfide bonds resulted in the complete loss of secretion of the mutant single-chain porcine insulin precursor (PIP) from Saccharomyces cerevisiae cells. Removal of the A7-B7 disulfide bond resulted in a large reduction of secretion, but we could obtain the mutant for analysis of its biological and some physico-chemical properties. The A7-B7 disulfide bond deleted insulin mutant retained only 0.1% receptor-binding activity compared with porcine insulin, and its in vivo biological potency measured by mouse convulsion assay was also very low. We also studied some physico-chemical properties of the mutant using circular dichroism, native polyacrylamide gel electrophoresis and reversed-phase HPLC, which revealed some structural changes of the mutant peptides compared to native insulin. The present study shows that the two inter-chain disulfide bonds are important for efficient in vivo folding/secretion of PIP from yeast, especially the A20-B19 disulfide bond, and that the A7-B7 disulfide bond is crucial for maintaining the native conformation and biological activity of insulin.
我们利用定点诱变技术,通过将半胱氨酸残基替换为丝氨酸,分别或同时删除胰岛素的两个链间二硫键。删除A20 - B19或两个链间二硫键都会导致突变的单链猪胰岛素前体(PIP)从酿酒酵母细胞中的分泌完全丧失。去除A7 - B7二硫键会导致分泌大幅减少,但我们能够获得该突变体以分析其生物学和一些物理化学性质。与猪胰岛素相比,缺失A7 - B7二硫键的胰岛素突变体仅保留0.1%的受体结合活性,并且通过小鼠惊厥试验测定的其体内生物学效价也非常低。我们还使用圆二色性、天然聚丙烯酰胺凝胶电泳和反相高效液相色谱研究了该突变体的一些物理化学性质,结果显示与天然胰岛素相比,突变肽存在一些结构变化。本研究表明,两个链间二硫键对于PIP在酵母中高效的体内折叠/分泌很重要,尤其是A20 - B19二硫键,并且A7 - B7二硫键对于维持胰岛素的天然构象和生物学活性至关重要。