Crystal Structure of a Laccase from the FungusTrametes versicolor at 1.90-Å Resolution Containing a Full Complement of Coppers
Кристаллическая структура лакказы из гриба Trametes versicolor с разрешением 1,90 Å, содержащей полный набор атомов меди
2002-09-27
SCID: 54.1/96cpytq8
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Trametes versicolor laccaseactive copper clusterblue multicopper oxidaseredox potential tuningtype-3 copper coordination
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Abstract (AI)
Laccase is a polyphenol oxidase, which belongs to the family of blue multicopper oxidases. These enzymes catalyze the one-electron oxidation of four reducing-substrate molecules concomitant with the four-electron reduction of molecular oxygen to water. Laccases oxidize a broad range of substrates, preferably phenolic compounds. In the presence of mediators, fungal laccases exhibit an enlarged substrate range and are then able to oxidize compounds with a redox potential exceeding their own. Until now, only one crystal structure of a laccase in an inactive, type-2 copper-depleted form has been reported. We present here the first crystal structure of an active laccase containing a full complement of coppers, the complete polypeptide chain together with seven carbohydrate moieties. Despite the presence of all coppers in the new structure, the folds of the two laccases are quite similar. The coordination of the type-3 coppers, however, is distinctly different. The geometry of the trinuclear copper cluster in the Trametes versicolor laccase is similar to that found in the ascorbate oxidase and that of mammalian ceruloplasmin structures, suggesting a common reaction mechanism for the copper oxidation and the O(2) reduction. In contrast to most blue copper proteins, the type-1 copper in the T. versicolor laccase has no axial ligand and is only 3-fold coordinated. Previously, a modest elevation of the redox potential was attributed to the lack of an axial ligand. Based on the present structural data and sequence comparisons, a mechanism is presented to explain how laccases could tune their redox potential by as much as 200 mV.
Key Findings
1
Despite full copper occupancy, the overall fold closely resembles that of the previously characterized inactive, type-2 copper-depleted laccase.
2
The structure includes the complete polypeptide chain and seven carbohydrate moieties, providing a comprehensive view of the fungal enzyme.
3
The study reports the first crystal structure of an active laccase containing the full complement of copper ions, resolved at 1.90 Å.
4
The type-1 copper lacks an axial ligand and is three-coordinate; structural and sequence analyses suggest laccases can tune redox potential by up to 200 mV.
5
The type-3 copper coordination differs distinctly, while the trinuclear copper cluster resembles those of ascorbate oxidase and mammalian ceruloplasmin, supporting a common oxygen-reduction mechanism.
Research Object
Crystal structure of an active Trametes versicolor laccase containing a full complement of copper ions (including trinuclear T2/T3 cluster and T1 site) with complete polypeptide chain and seven carbohydrate moieties
Research Subject
The laccase’s copper-center coordination, trinuclear copper-cluster geometry, and structural basis for tuning redox potential and catalyzing O2 reduction
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2002-09-27
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