Ferritin binds to light chain of human H-kininogen and inhibits kallikrein-mediated bradykinin release.
Ferritin is an iron-storage protein that exists in both intracellular and extracellular compartments. We have previously identified H-kininogen (high-molecular-weight kininogen) as a ferritin-binding protein [Torti and Torti (1998) J. Biol. Chem. 273, 13630-13635]. H-Kininogen is a precursor of the potent pro-inflammatory peptide bradykinin, which is released from H-kininogen following cleavage ... of H-kininogen by the serine protease kallikrein. In this report, we demonstrate that binding of ferritin to H-kininogen occurs via the modified light chain of H-kininogen, and that ferritin binds preferentially to activated H-kininogen. We further demonstrate that binding of ferritin to H-kininogen retards the proteolytic cleavage of H-kininogen by kallikrein and its subsequent release of bradykinin from H-kininogen. Ferritin does not interfere with the ability of kallikrein to digest a synthetic substrate, suggesting that ferritin specifically impedes the ability of kallikrein to digest H-kininogen, perhaps by steric hindrance. Based on these results, we propose a model of sequential H-kininogen cleavage and ferritin binding. These results are consistent with the hypothesis that the binding of ferritin to H-kininogen may serve to modulate bradykinin release.
Mesh Terms:
Bradykinin, Ferritins, Humans, Kallikreins, Kininogen, High-Molecular-Weight, Models, Biological, Protein Binding
Bradykinin, Ferritins, Humans, Kallikreins, Kininogen, High-Molecular-Weight, Models, Biological, Protein Binding
Biochem. J.
Date: Jul. 01, 2002
PubMed ID: 12071855
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