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      Ferritins: dynamic management of biological iron and oxygen chemistry.

      Accounts of Chemical Research
      Animals, Ferritins, chemistry, Iron, Models, Molecular, Oxidation-Reduction, Oxygen, Protein Conformation, Protein Isoforms, Protein Subunits

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          Abstract

          Ferritins are spherical, cage-like proteins with nanocavities formed by multiple polypeptide subunits (four-helix bundles) that manage iron/oxygen chemistry. Catalytic coupling yields diferric oxo/hydroxo complexes at ferroxidase sites in maxi-ferritin subunits (24 subunits, 480 kDa; plants, animals, microorganisms). Oxidation occurs at the cavity surface of mini-ferritins/Dps proteins (12 subunits, 240 kDa; bacteria). Oxidation products are concentrated as minerals in the nanocavity for iron-protein cofactor synthesis (maxi-ferritins) or DNA protection (mini-ferritins). The protein cage and nanocavity characterize all ferritins, although amino acid sequences diverge, especially in bacteria. Catalytic oxidation/di-iron coupling in the protein cage (maxi-ferritins, 480 kDa; plants, bacteria and animal cell-specific isoforms) or on the cavity surface (mini-ferritins/Dps proteins, 280 kDa; bacteria) initiates mineralization. Gated pores (eight or four), symmetrically arranged, control iron flow. The multiple ferritin functions combine pore, channel, and catalytic functions in compact protein structures required for life and disease response.

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          Author and article information

          Journal
          15766235
          10.1021/ar0302336

          Chemistry
          Animals,Ferritins,chemistry,Iron,Models, Molecular,Oxidation-Reduction,Oxygen,Protein Conformation,Protein Isoforms,Protein Subunits

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