Two isoforms of laccase were obtained as the predominant phenol-oxidases in de®ned medium liquid cultures of the ``white-rot'' fungus Rigidoporus lignosus (R. lignosus). A characterization of the two laccases was made in terms of molecular mass, isoelectric point, metal content and N-terminal sequence. Furthermore, in order to gain information on the structural features related to the metal centers, a study of their geometric arrangement and their redox ability was made. It turned out that the two isoenzymes greatly di€ered with regard to pH stability, catalytic and copper centers features. It is proposed that all such di€erences are dependent on the amino acid sequences, which cause a distortion of the copper sites, thus accounting for the redox potential values and kinetic properties.

A comparative study of two isoforms of laccase secreted by the "white-rot" fungus Rigidoporus lignosus, exhibiting significant structural and functional differences

R Cozzolino;
1998

Abstract

Two isoforms of laccase were obtained as the predominant phenol-oxidases in de®ned medium liquid cultures of the ``white-rot'' fungus Rigidoporus lignosus (R. lignosus). A characterization of the two laccases was made in terms of molecular mass, isoelectric point, metal content and N-terminal sequence. Furthermore, in order to gain information on the structural features related to the metal centers, a study of their geometric arrangement and their redox ability was made. It turned out that the two isoenzymes greatly di€ered with regard to pH stability, catalytic and copper centers features. It is proposed that all such di€erences are dependent on the amino acid sequences, which cause a distortion of the copper sites, thus accounting for the redox potential values and kinetic properties.
1998
CHIMICA E TECNOLOGIA DEI POLIMERI
Istituto di Scienze dell'Alimentazione - ISA
Istituto per i Polimeri, Compositi e Biomateriali - IPCB
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/126728
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