Neutrophil-Derived Proteinase 3 Induces Kallikrein-Independent Release of a Novel Vasoactive Kinin

  • Kahn R
  • Hellmark T
  • Leeb-Lundberg L
  • et al.
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Abstract

The kinin-forming pathway is activated on endothelial cells and neutrophils when high-molecular weight kininogen (HK) is cleaved by plasma kallikrein liberating bradykinin, a potent mediator of inflammation. Kinins are released during inflammatory conditions such as vasculitis, associated with neutrophil influx around blood vessels. Some patients with vasculitis have elevated plasma levels of neutrophil-derived proteinase 3 (PR3) and anti-PR3 Abs. This study investigated if neutrophil-derived PR3 could induce activation of the kinin pathway. PR3 incubated with HK, or a synthetic peptide derived from HK, induced breakdown and release of a novel tridecapeptide termed PR3-kinin, NH2-MKRPPGFSPFRSS-COOH, consisting of bradykinin with two additional amino acids on each terminus. The reaction was specific and inhibited by anti-PR3 and α1-antitrypsin. Recombinant wild-type PR3 incubated with HK induced HK breakdown, whereas mutated PR3, lacking enzymatic activity, did not. PR3-kinin bound to and activated human kinin B1 receptors, but did not bind to B2 receptors, expressed by transfected HEK293 cells in vitro. In human plasma PR3-kinin was further processed to the B2 receptor agonist bradykinin. PR3-kinin exerted a hypotensive effect in vivo through both B1 and B2 receptors as demonstrated using wild-type and B1 overexpressing rats as well as wild-type and B2 receptor knockout mice. Neutrophil extracts from vasculitis patients and healthy controls contained comparable amounts of PR3 and induced HK proteolysis, an effect that was abolished when PR3 was immunoadsorbed. Neutrophil-derived PR3 can proteolyze HK and liberate PR3-kinin, thereby initiating kallikrein-independent activation of the kinin pathway.

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Kahn, R., Hellmark, T., Leeb-Lundberg, L. M. F., Akbari, N., Todiras, M., Olofsson, T., … Karpman, D. (2009). Neutrophil-Derived Proteinase 3 Induces Kallikrein-Independent Release of a Novel Vasoactive Kinin. The Journal of Immunology, 182(12), 7906–7915. https://doi.org/10.4049/jimmunol.0803624

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