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Purification, crystallization and phase determination of the DR1998 haem b catalase from Deinococcus radiodurans.


ABSTRACT: The protective mechanisms of Deinococcus radiodurans against primary reactive oxygen species involve nonenzymatic scavengers and a powerful enzymatic antioxidant system including catalases, peroxidases and superoxide dismutases that prevents oxidative damage. Catalase is an enzyme that is responsible for the conversion of H2O2 to O2 and H2O, protecting the organism from the oxidative effect of H2O2. This study reports the purification and crystallization of the DR1998 catalase from D. radiodurans. The crystals diffracted to 2.6 Å resolution and belonged to space group C2221, with unit-cell parameters a = 97.33, b = 311.88, c = 145.63 Å, suggesting that they contain four molecules per asymmetric unit. The initial phases were determined by molecular replacement and the obtained solution shows the typical catalase quaternary structure. A preliminary model of the protein structure has been built and refinement is currently in progress.

SUBMITTER: Borges PT 

PROVIDER: S-EPMC4014341 | biostudies-literature | 2014 May

REPOSITORIES: biostudies-literature

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Purification, crystallization and phase determination of the DR1998 haem b catalase from Deinococcus radiodurans.

Borges Patrícia T PT   Miranda Cecília S CS   Santos Sandra P SP   Carita João N JN   Frazão Carlos C   Romão Célia V CV  

Acta crystallographica. Section F, Structural biology communications 20140425 Pt 5


The protective mechanisms of Deinococcus radiodurans against primary reactive oxygen species involve nonenzymatic scavengers and a powerful enzymatic antioxidant system including catalases, peroxidases and superoxide dismutases that prevents oxidative damage. Catalase is an enzyme that is responsible for the conversion of H2O2 to O2 and H2O, protecting the organism from the oxidative effect of H2O2. This study reports the purification and crystallization of the DR1998 catalase from D. radioduran  ...[more]

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