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  <title>Unitus DSpace</title>
  <link rel="alternate" href="http://http://dspace.unitus.it:80" />
  <subtitle>The DSpace digital repository system captures, stores, indexes, preserves, and distributes digital research material.</subtitle>
  <id>http://http://dspace.unitus.it:80</id>
  <updated>2013-05-24T11:22:38Z</updated>
  <dc:date>2013-05-24T11:22:38Z</dc:date>
  <entry>
    <title>Kinetic and redox properties of MnP II, a major manganese peroxidase isoenzyme from Panus tigrinus CBS 577.79.</title>
    <link rel="alternate" href="http://hdl.handle.net/2067/1411" />
    <author>
      <name>Petruccioli, Maurizio</name>
    </author>
    <author>
      <name>Frascono, Marco</name>
    </author>
    <author>
      <name>Quaratino, Daniele</name>
    </author>
    <author>
      <name>Covino, Stefano</name>
    </author>
    <author>
      <name>Favero, Gabriele</name>
    </author>
    <author>
      <name>Mazzei, Franco</name>
    </author>
    <author>
      <name>Federici, Federico</name>
    </author>
    <author>
      <name>D'Annibale, Alessandro</name>
    </author>
    <id>http://hdl.handle.net/2067/1411</id>
    <updated>2011-06-30T12:42:40Z</updated>
    <published>2008-12-31T23:00:00Z</published>
    <summary type="text">Title: Kinetic and redox properties of MnP II, a major manganese peroxidase isoenzyme from Panus tigrinus CBS 577.79.
Authors: Petruccioli, Maurizio; Frascono, Marco; Quaratino, Daniele; Covino, Stefano; Favero, Gabriele; Mazzei, Franco; Federici, Federico; D'Annibale, Alessandro
Abstract: A manganese peroxidase (MnP) isoenzyme&#xD;
from Panus tigrinus CBS 577.79 was produced in a benchtop stirred-tank reactor and purified to apparent homogeneity. The purification scheme involving ultrafiltration, affinity chromatography on concanavalin–A Sepharose, and gel filtration led to a purified MnP, termed ‘‘MnP II,’’ with a specific activity of 288 IU mg-1 protein and a final yield of 22%. The enzyme turned out to be a monomeric protein with molecular mass of 50.5 kDa, pI of 4.07, and an extent of N-glycosylation of about 5.3% of the high-mannose type. The temperature and pH optima for the formation of malonate manganic chelates were 45°C and 5.5, respectively. MnP II proved to be poorly thermostable at 50 and 60°C, with half-lives of 11 min and 105 s, respectively. Km values for H2O2 and Mn2+ were 16 and&#xD;
124 lM, respectively. Although MnP II was able to oxidize veratryl alcohol and to catalyze the Mn2+ -independent&#xD;
oxidation of several phenols, it cannot be assigned to the versatile peroxidase family. As opposed to versatile peroxidase&#xD;
oxidation, veratryl alcohol oxidation required the simultaneous presence of H2O2 and Mn2+; in addition, low turnover numbers and Km values higher than 300 lM&#xD;
characterized the Mn2+ -independent oxidation of substituted phenols. Kinetic properties and the substrate specificity&#xD;
of the enzyme markedly differed from those reported for MnP isoenzymes produced by the reference strain P. tigrinus 8/18. To our knowledge, this study reports for the first time a thorough electrochemical  characterization of a MnP from this fungus.
Description: L'articolo è disponibile sul sito dell'editore: http://www.springerlink.com</summary>
    <dc:date>2008-12-31T23:00:00Z</dc:date>
  </entry>
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