Initial characterization of an iron superoxide dismutase from Thermobifida fusca
Permanent lenke
https://hdl.handle.net/10037/31847Dato
2023-09-19Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Hamre, Anne Grethe; Al-Sadawi, Rim; Johannesen, Kirsti Merete; Bisarro, Bastien; Kjendseth, Åsmund Røhr; Leiros, Hanna-Kirsti S.; Sørlie, MortenSammendrag
Superoxide dismutases (SODs) are enzymes that catalyze the dismutation of the superoxide radical anion into O2 and H2O2
in a two-step reaction. They are ubiquitous to all forms of life and four different types of metal centers are detected, dividing
this class of enzymes into Cu-/Zn-, Ni-, Mn-, and Fe-SODs. In this study, a superoxide dismutase from the thermophilic
bacteria Thermobifda fusca (TfSOD) was cloned and expressed before the recombinant enzyme was characterized. The
enzyme was found to be active for superoxide dismutation measured by inhibition of cytochrome c oxidation and the inhibition of the autoxidation of pyrogallol. Its pH-optimum was determined to be 7.5, while it has a broad temperature optimum
ranging from 20 to 90 °C. Combined with the Tm that was found to be 78.5±0.5 °C at pH 8.0, TfSOD can be defined as
a thermostable enzyme. Moreover, the crystal structure of TfSOD was determined and refined to 1.25 Å resolution. With
electron paramagnetic resonance spectroscopy, it was confirmed that iron is the metal co-factor of TfSOD. The cell potential
(Em) for the TfSOD-Fe3+/TfSOD-Fe2+ redox couple was determined to be 287 mV.
Forlag
Springer NatureSitering
Hamre, Al-Sadawi, Johannesen, Bisarro, Kjendseth, Leiros, Sørlie. Initial characterization of an iron superoxide dismutase from Thermobifida fusca. JBIC Journal of Biological Inorganic Chemistry. 2023Metadata
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