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Fe-Mn family superoxide dismutase
superoxide dismutases (SODs) catalyse the conversion of superoxide radicals to hydrogen peroxide and molecular oxygen. Three evolutionarily distinct families of SODs are known, of which the Mn/Fe-binding family is one. In humans, there is a cytoplasmic Cu/Zn SOD, and a mitochondrial Mn/Fe SOD. C-terminal domain is a mixed alpha/beta fold. [1]. 9878438. Refined crystal structure of a superoxide dismutase from the. hyperthermophilic archaeon Sulfolobus acidocaldarius at 2.2 A. resolution.. Knapp S, Kardinahl S, Hellgren N, Tibbelin G, Schafer G,. Ladenstein R;. J Mol Biol 1999;285:689-702. (from Pfam)
Iron/manganese superoxide dismutases, alpha-hairpin domain
superoxide dismutases (SODs) catalyse the conversion of superoxide radicals to hydrogen peroxide and molecular oxygen. Three evolutionarily distinct families of SODs are known, of which the Mn/Fe-binding family is one. In humans, there is a cytoplasmic Cu/Zn SOD, and a mitochondrial Mn/Fe SOD. N-terminal domain is a long alpha antiparallel hairpin. A small fragment of YTRE_LEPBI matches well - sequencing error? [1]. 9878438. Refined crystal structure of a superoxide dismutase from the. hyperthermophilic archaeon Sulfolobus acidocaldarius at 2.2 A. resolution.. Knapp S, Kardinahl S, Hellgren N, Tibbelin G, Schafer G,. Ladenstein R;. J Mol Biol 1999;285:689-702. (from Pfam)
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