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      Characterization of Dye-decolorizing Peroxidase (DyP) from Thermomonospora curvata Reveals Unique Catalytic Properties of A-type DyPs.

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          Abstract

          Dye-decolorizing peroxidases (DyPs) comprise a new family of heme peroxidases, which has received much attention due to their potential applications in lignin degradation. A new DyP from Thermomonospora curvata (TcDyP) was identified and characterized. Unlike other A-type enzymes, TcDyP is highly active toward a wide range of substrates including model lignin compounds, in which the catalytic efficiency with ABTS (kcat(app)/Km(app) = (1.7 × 10(7)) m(-1) s(-1)) is close to that of fungal DyPs. Stopped-flow spectroscopy was employed to elucidate the transient intermediates as well as the catalytic cycle involving wild-type (wt) and mutant TcDyPs. Although residues Asp(220) and Arg(327) are found necessary for compound I formation, His(312) is proposed to play roles in compound II reduction. Transient kinetics of hydroquinone (HQ) oxidation by wt-TcDyP showed that conversion of the compound II to resting state is a rate-limiting step, which will explain the contradictory observation made with the aspartate mutants of A-type DyPs. Moreover, replacement of His(312) and Arg(327) has significant effects on the oligomerization and redox potential (E°') of the enzyme. Both mutants were found to promote the formation of dimeric state and to shift E°' to a more negative potential. Not only do these results reveal the unique catalytic property of the A-type DyPs, but they will also facilitate the development of these enzymes as lignin degraders.

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          Author and article information

          Journal
          J. Biol. Chem.
          The Journal of biological chemistry
          American Society for Biochemistry & Molecular Biology (ASBMB)
          1083-351X
          0021-9258
          Sep 18 2015
          : 290
          : 38
          Affiliations
          [1 ] From the Departments of Chemistry.
          [2 ] the Protein Production Group, University of Kansas, Lawrence, Kansas 66045.
          [3 ] Biochemistry and Molecular Biophysics, and.
          [4 ] Anatomy and Physiology, Kansas State University, Manhattan, Kansas 66506 and.
          [5 ] From the Departments of Chemistry, pli@ksu.edu.
          Article
          M115.658807
          10.1074/jbc.M115.658807
          4645587
          26205819
          2447a9f6-70de-4811-9ce8-b846a48a966a
          History

          oxidation-reduction (redox),oligomerization,lignin degradation,heme,enzyme kinetics,dye-decolorizing peroxidase,stopped-flow spectroscopy

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