• Title of article

    Characterization of two new multiforms of Trametes pubescens laccase

  • Author/Authors

    Shleev، نويسنده , , Sergey and Nikitina، نويسنده , , Oxana and Christenson، نويسنده , , Andreas and Reimann، نويسنده , , Curt T. and Yaropolov، نويسنده , , Alexander I. and Ruzgas، نويسنده , , Tautgirdas and Gorton، نويسنده , , Lo، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    15
  • From page
    35
  • To page
    49
  • Abstract
    Electrochemical properties of two multiforms of laccase from Trametes pubescens basidiomycete (LAC1 and LAC2) have been studied. The standard redox potentials of the T1 sites of the enzymes were found to be 746 and 738 mV vs. NHE for LAC1 and LAC2, respectively. Bioelectroreduction of oxygen based on direct electron transfer between each of the two forms of Trametes pubescens laccase and spectrographic graphite electrodes has been demonstrated and studied. It is concluded that the T1 site of laccase is the first electron acceptor, both in solution (homogeneous case) and when the enzymes are adsorbed on the surface of the graphite electrode (heterogeneous case). Thus, the previously proposed mechanism of oxygen bioelectroreduction by adsorbed fungal laccase was additionally confirmed using two forms of the enzyme. Moreover, the assumed need for extracellular laccase to communicate directly and electronically with a solid matrix (lignin) in the course of lignin degradation is discussed. In summary, the possible roles of multiforms of the enzyme based on their electrochemical, biochemical, spectral, and kinetic properties have been suggested to consist in broadening of the substrate specificity of the enzyme, in turn yielding the possibility to dynamically regulate the process of lignin degradation according to the real-time survival needs of the organism.
  • Keywords
    Trametes pubescens , Laccase , Redox potential , T1 site , Lignin degradation
  • Journal title
    Bioorganic Chemistry: an International Journal
  • Serial Year
    2007
  • Journal title
    Bioorganic Chemistry: an International Journal
  • Record number

    1385893