漆酶
酚类
木质素
化学
饱和突变
基质(水族馆)
氧化还原
酶
突变体
组合化学
生物化学
突变
有机化学
生物
生态学
基因
作者
Isabel Pardo,Susana Camarero
出处
期刊:Molecules
[MDPI AG]
日期:2015-09-02
卷期号:20 (9): 15929-15943
被引量:18
标识
DOI:10.3390/molecules200915929
摘要
Saturation mutagenesis was performed over six residues delimiting the substrate binding pocket of a fungal laccase previously engineered in the lab. Mutant libraries were screened using sinapic acid as a model substrate, and those mutants presenting increased activity were selected for exploring the oxidation of lignin-derived phenols. The latter comprised a battery of phenolic compounds of interest due to their use as redox mediators or precursors of added-value products and their biological activity. The new laccase variants were investigated in a multi-screening assay and the structural determinants, at both the substrate and the protein level, for the oxidation of the different phenols are discussed. Laccase activity greatly varied only by changing one or two residues of the enzyme pocket. Our results suggest that once the redox potential threshold is surpassed, the contribution of the residues of the enzymatic pocket for substrate recognition and binding strongly influence the overall rate of the catalytic reaction.
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