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Appl. Environ. Microbiol., 06 1997, 2166-2174, Vol 63, No. 6
C Munoz, F Guillen, AT Martinez and MJ Martinez
Two laccase isoenzymes produced by Pleurotus eryngii were purified to
electrophoretic homogeneity (42- and 43-fold) with an overall yield of
56.3%. Laccases I and II from this fungus are monomeric glycoproteins with
7 and 1% carbohydrate content, molecular masses (by sodium dodecyl
sulfate-polyacrylamide gel electrophoresis) of 65 and 61 kDa, and pIs of
4.1 and 4.2, respectively. The highest rate of 2,2'-azino-bis(3-
ethylbenzothiazoline-6-sulfonate) oxidation for laccase I was reached at 65
degrees C and pH 4, and that for laccase II was reached at 55 degrees C and
pH 3.5. Both isoenzymes are stable at high pH, retaining 60 to 70% activity
after 24 h from pH 8 to 12. Their amino acid compositions and N-terminal
sequences were determined, the latter strongly differing from those of
laccases of other basidiomycetes. Antibodies against laccase I reacted with
laccase II, as well as with laccases from Pleurotus ostreatus, Pleurotus
pulmonarius, and Pleurotus floridanus. Different hydroxy- and
methoxy-substituted phenols and aromatic amines were oxidized by the two
laccase isoenzymes from P. eryngii, and the influence of the nature,
number, and disposition of aromatic-ring substituents on kinetic constants
is discussed. Although both isoenzymes presented similar substrate
affinities, the maximum rates of reactions catalyzed by laccase I were
higher than those of laccase II. In reactions with hydroquinones,
semiquinones produced by laccase isoenzymes were in part converted into
quinones via autoxidation. The superoxide anion radical produced in the
latter reaction dismutated, producing hydrogen peroxide. In the presence of
manganous ion, the superoxide union was reduced to hydrogen peroxide with
the concomitant production of manganic ion. These results confirmed that
laccase in the presence of hydroquinones can participate in the production
of both reduced oxygen species and manganic ions.
Copyright © 1997, American Society for Microbiology
Laccase isoenzymes of Pleurotus eryngii: characterization, catalytic properties, and participation in activation of molecular oxygen and Mn2+ oxidation
Centro de Investigaciones Biologicas, Consejo Superior de Investigaciones Cientificus, Madrid, Spain.
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