Proximal mutations at the type 1 copper site of CotA laccase: spectroscopic, redox, kinetic and structural characterization of I494A and L386A mutants

Проксимальные мутации в центре типа 1 с медью лакказы CotA: спектроскопическая, окислительно-восстановительная, кинетическая и структурная характеристика мутантов I494A и L386A
Paulo Durão, Zhenjia Chen, Catarina S. Silva, Cláudio M. Soares, Manuela M. Pereira, Smilja Todorović, Peter Hildebrandt, Isabel Bento, Peter F. Lindley, Lı́gia O. Martins
2008-05-09

CotA laccaseI494A and L386A mutantsX-ray crystallographyresonance Raman spectroscopytype 1 copper site
In the present study the CotA laccase from Bacillus subtilis has been mutated at two hydrophobic residues in the vicinity of the type 1 copper site. The mutation of Leu(386) to an alanine residue appears to cause only very subtle alterations in the properties of the enzyme indicating minimal changes in the structure of the copper centres. However, the replacement of Ile(494) by an alanine residue leads to significant changes in the enzyme. Thus the major visible absorption band is upshifted by 16 nm to 625 nm and exhibits an increased intensity, whereas the intensity of the shoulder at approx. 330 nm is decreased by a factor of two. Simulation of the EPR spectrum of the I494A mutant reveals differences in the type 1 as well as in the type 2 copper centre reflecting modifications of the geometry of these centres. The intensity weighted frequencies , calculated from resonance Raman spectra are 410 cm(-1) for the wild-type enzyme and 396 cm(-1) for the I494A mutant, indicating an increase of the Cu-S bond length in the type 1 copper site of the mutant. Overall the data clearly indicate that the Ile(494) mutation causes a major alteration of the structure near the type 1 copper site and this has been confirmed by X-ray crystallography. The crystal structure shows the presence of a fifth ligand, a solvent molecule, at the type 1 copper site leading to an approximate trigonal bipyramidal geometry. The redox potentials of the L386A and I494A mutants are shifted downwards by approx. 60 and 100 mV respectively. These changes correlate well with decreased catalytic efficiency of both mutants compared with the wild-type.
1
I494A modifies the geometries of both type 1 and type 2 copper centers, as shown by EPR spectral simulations.
2
I494A substantially alters the enzyme, shifting the major absorption band 16 nm to 625 nm and increasing its intensity.
3
L386A causes only subtle spectroscopic and structural changes, indicating minimal perturbation of CotA laccase copper centers.
4
Resonance Raman frequencies decrease from 410 cm⁻¹ in wild type to 396 cm⁻¹ in I494A, indicating a longer type 1 Cu–S bond.
5
X-ray crystallography reveals a fifth, solvent-derived ligand at the I494A type 1 copper site, producing approximate trigonal-bipyramidal geometry; redox potentials decrease by approximately 60 mV for L386A and 100 mV for I494A, correlating with reduced catalytic efficiency.

CotA laccase from Bacillus subtilis, including the I494A and L386A mutants with mutations near the type 1 copper site

The effects of proximal hydrophobic-residue mutations on the copper-center structure, spectroscopic and redox properties, and catalytic efficiency of CotA laccase

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2008-05-09
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Paulo Durão
Zhenjia Chen
Catarina S. Silva
Cláudio M. Soares
Manuela M. Pereira
Smilja Todorović
Peter Hildebrandt
Isabel Bento
Peter F. Lindley
Lı́gia O. Martins
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