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Spectroscopic evidence for an engineered catalytically-active trp radical that creates the unique reactivity of lignin peroxidase

journal contribution
posted on 2024-11-01, 07:07 authored by Andrew Smith, W. A Doyle, P Dorlet, A. Ivancich
The surface oxidation site (Trp-171) in lignin peroxidase (LiP) required for the reaction with veratryl alcohol a high-redox-potential (1.4 V) substrate, was engineered into Coprinus cinereus peroxidase (CiP) by introducing a Trp residue into a heme peroxidase that has similar protein fold but lacks this activity. To create the catalytic activity toward veratryl alcohol in CiP, it was necessary to reproduce the Trp site and its negatively charged microenvironment by means of a triple mutation. The resulting D179W+R258E+R272D variant was characterized by multifrequency EPR spectroscopy. The spectra unequivocally showed that a new Trp radical [g values of gx = 2.0035(5), gy = 2.0027(5), and gz = 2.0022(1)] was formed after the [Fe(IV)=O Por+] intermediate, as a result of intramolecular electron transfer between Trp-179 and the porphyrin. Also, the EPR characterization crucially showed that [Fe(IV)=O Trp-179] was the reactive intermediate with veratryl alcohol. Accordingly, our work shows that it is necessary to take into account the physicochemical properties of the radical, fine-tuned by the microenvironment, as well as those of the preceding [Fe(IV)=O Por+] intermediate to engineer a catalytically competent Trp site for a given substrate. Manipulation of the microenvironment of the Trp-171 site in LiP allowed the detection by EPR spectroscopy of the Trp-171, for which direct evidence has been missing so far. Our work also highlights the role of Trp residues as tunable redox-active cofactors for enzyme catalysis in the context of peroxidases with a unique reactivity toward recalcitrant substrates that require oxidation potentials not realized at the heme site.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1073/pnas.0904535106
  2. 2.
    ISSN - Is published in 00278424

Journal

Proceedings of the National Academy of Sciences

Volume

106

Issue

38

Start page

1684

End page

1689

Total pages

6

Publisher

National Academy of Sciences

Place published

United States

Language

English

Copyright

© 2009 by the National Academy of Sciences

Former Identifier

2006018772

Esploro creation date

2020-06-22

Fedora creation date

2013-02-19

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