Site-directed mutations in fungal laccase: effect on redox potential, activity and pH profile

Сайт-направленные мутации в грибной лакказе: влияние на окислительно-восстановительный потенциал, активность и профиль pH
Edward I. Solomon, Amy E. Palmer, Feng Xu, Stephen H.M. Brown, Jill A. Wahleithner, Randy M. Berka, Jeffrey R. Shuster, Beth A. Nelson
1998-08-15

fungal laccasephenol-oxidase activityredox potentialsite-directed mutagenesistype-1 copper site
A Myceliophthora thermophila laccase and a Rhizoctonia solani laccase were mutated on a pentapeptide segment believed to be near the type-1 Cu site. The mutation L513F in Myceliophthora laccase and the mutation L470F in Rhizoctonia laccase took place at a position corresponding to the type-1 Cu axial methionine (M517) ligand in Zucchini ascorbate oxidase. The triple mutations V509L,S510E,G511A in Myceliophthora laccase and L466V,E467S,A468G in Rhizoctonia laccase involved a sequence segment whose homologue in ascorbate oxidase is flanked by the M517 and a type-1 Cu-ligating histidine (H512). The single mutation did not yield significant changes in the enzymic properties (including any significant increase in the redox potential of the type-1 Cu). In contrast, the triple mutation resulted in several significant changes. In comparison with the wild type, the Rhizoctonia and Myceliophthora laccase triple mutants had a phenol-oxidase activity whose pH optimum shifted 1 unit lower and higher, respectively. Although the redox potentials were not significantly altered, the Km, kcat and fluoride inhibition of the laccases were greatly changed by the mutations. The observed effects are interpreted as possible mutation-induced structural perturbations on the molecular recognition between the reducing substrate and laccase and on the electron transfer from the substrate to the type-1 Cu centre.
1
Single leucine-to-phenylalanine mutations did not significantly alter enzymatic properties or increase the type-1 copper redox potential.
2
Site-directed mutations near the type-1 copper site were introduced into Myceliophthora thermophila and Rhizoctonia solani laccases.
3
The effects likely reflect mutation-induced structural perturbations affecting substrate recognition and electron transfer to the type-1 copper center.
4
The phenol-oxidase pH optimum shifted one unit lower in the Rhizoctonia mutant and one unit higher in the Myceliophthora mutant.
5
Triple mutations caused substantial changes in Km, kcat, and fluoride inhibition, despite leaving redox potentials statistically unchanged.

Site-directed mutant laccases from Myceliophthora thermophila and Rhizoctonia solani

Effects of mutations near the type-1 Cu site on redox potential, catalytic activity, pH profile, kinetic parameters, fluoride inhibition, and substrate recognition/electron transfer

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1998-08-15
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Authors
Edward I. Solomon
Amy E. Palmer
Feng Xu
Stephen H.M. Brown
Jill A. Wahleithner
Randy M. Berka
Jeffrey R. Shuster
Beth A. Nelson
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