Turkey Tail, Yun Zhi · 2013 · Journal Article
Low relevanceConcerted electron/proton transfer mechanism in the oxidation of phenols by laccase.
Trametes versicolor
Key points
- This study aimed to assess structural requirements in the enzyme/substrate interactions that are responsible for tuning the enzymatic reactivity
- To better assess the role of the aspartic residue in the substrate-binding pocket of basidiomycete-type laccases, we compared the catalytic efficiency of wild-type enzymes to that of a mutant in which carboxylic acid residue Asp206 was changed to alanine
- Oxidation efficiency towards phenolic substrates by laccases of Trametes villosa, Trametes versicolor and a T. versicolor D206A mutant was studied at two pH values
- By the Hammett approach and Marcus analysis, we obtained unambiguous evidence that the oxidation takes place by a concerted electron/proton transfer (EPT) mechanism, and that at pH 5 (optimum pH for enzyme activity) the phenolic proton is transferred to Asp206 during the concerted electron/proton transfer process
Metadata-grounded summary
Citation abstract
This study aimed to assess structural requirements in the enzyme/substrate interactions that are responsible for tuning the enzymatic reactivity. To better assess the role of the aspartic residue in the substrate-binding pocket of basidiomycete-type laccases, we compared the catalytic efficiency of wild-type enzymes to that of a mutant in which carboxylic acid residue Asp206 was changed to alanine. Oxidation efficiency towards phenolic substrates by laccases of Trametes villosa, Trametes versicolor and a T. versicolor D206A mutant was studied at two pH values. By the Hammett approach and Marcus analysis, we obtained unambiguous evidence that the oxidation takes place by a concerted electron/proton transfer (EPT) mechanism, and that at pH 5 (optimum pH for enzyme activity) the phenolic proton is transferred to Asp206 during the concerted electron/proton transfer process.
Citation
Galli C, Madzak C, Vadalà R, Jolivalt C, Gentili P (2013). Concerted electron/proton transfer mechanism in the oxidation of phenols by laccase. Chembiochem: a European journal of chemical biology https://doi.org/10.1002/cbic.201300531 PMID: 24151197
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