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Peptide models of four possible insulin folding intermediates with two disulfides
Authors:Jia Xiao-Yuan  Guo Zhan-Yun  Wang Yao  Xu Ye  Duan Shun-Shan  Feng You-Min
Institution:Key Laboratory of Proteomics, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Abstract:The single-chain insulin (PIP) can spontaneously fold into native structure through preferred kinetic intermediates. During refolding, pairing of the first disulfide A20-B19 is highly specific, whereas pairing of the second disulfide is likely random because two two-disulfide intermediates have been trapped. To get more details of pairing property of the second disulfide, four model peptides of possible folding intermediates with two disulfides were prepared by protein engineering, and their properties were analyzed. The four model peptides were named A20-B19, A7-B7]PIP, A20-B19, A6-B7]PIP, A20-B19, A6-A11]PIP, and A20-B19, A7-A11]PIP according to their remaining disulfides. The four model peptides all adopt partially folded structure with moderate conformational differences. In redox buffer, the disulfides of the model peptides are more easily reduced than those of the wild-type PIP. During in vitro refolding, the reduced model peptides share similar relative folding rates but different folding yields: The refolding efficiency of the reduced A20-B19, A7-A11]PIP is about threefold lower than that of the other three peptides. The present results indicate that the folding intermediates corresponding to the present model peptides all adopt partially folded conformation, and can be formed during PIP refolding, but the chance of forming the intermediate with disulfide A20-B19, A7-A11] is much lower than that of forming the other three intermediates.
Keywords:Insulin  folding  intermediate  disulfide bonds  kinetics  PIP  recombinant single‐chain insulin in which the C terminus of porcine insulin B‐chain and the N terminus of porcine insulin A‐chain were linked together by a dipeptide  Ala‐Lys  IGF‐1  insulin‐like growth factor 1  BPTI  bovine pancreatic trypsin inhibitor  EGF  epidermal growth factor  GSH  reduced glutathione  GSSG  oxidized glutathione  HPLC  high‐performance liquid chromatography  TFA  trifluoroacetic acid  PAGE  polyacrylamide gel electrophoresis  CD  circular dichroism  NMR  nuclear magnetic resonance
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