To inculcate biocatalytic activity in the oxygen-storage protein myoglobin (Mb), a genetically engineered myoglobin mutant H64DOPA (DOPAâ=âL-3,4-dihydroxyphenylalanine) has been created. Incorporation of unnatural amino acids has already demonstrated their ability to accomplish many non-natural functions in proteins efficiently. Herein, the presence of redox-active DOPA residue in the active site of mutant Mb presumably stabilizes the compound I in the catalytic oxidation process by participating in an additional hydrogen bonding (H-bonding) as compared to the WT Mb. Specifically, a general acid-base catalytic pathway was achieved due to the availability of the hydroxyl moieties of DOPA. The reduction potential values of WT (E°â=â-260â mV) and mutant Mb (E°â=â-300â mV), w.r.t. Ag/AgCl reference electrode, in the presence of hydrogen peroxide, indicated an additional H-bonding in the mutant protein, which is responsible for the peroxidase activity of the mutant Mb. We observed that in the presence of 5â mM H2O2, H64DOPA Mb oxidizes thioanisole and benzaldehyde with a 10 and 54 folds higher rate, respectively, as opposed to WT Mb. Based on spectroscopic, kinetic, and electrochemical studies, we deduce that DOPA residue, when present within the distal pocket of mutant Mb, alone serves the role of His/Arg-pair of peroxidases.
Abiological catalysis by myoglobin mutant with a genetically incorporated unnatural amino acid.
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作者:Chand Subhash, Ray Sriparna, Yadav Poonam, Samanta Susruta, Pierce Brad S, Perera Roshan
| 期刊: | Biochemical Journal | 影响因子: | 4.300 |
| 时间: | 2021 | 起止号: | 2021 May 14; 478(9):1795-1808 |
| doi: | 10.1042/BCJ20210091 | ||
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