4.8 Article

The contact system -: a novel branch of innate immunity generating antibacterial peptides

Journal

EMBO JOURNAL
Volume 25, Issue 23, Pages 5569-5578

Publisher

WILEY
DOI: 10.1038/sj.emboj.7601422

Keywords

antibacterial peptides; bacterial killing; contact system; innate immunity

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Activation of the contact system has two classical consequences: initiation of the intrinsic pathway of coagulation, and cleavage of high molecular weight kininogen (HK) leading to the release of bradykinin, a potent proinflammatory peptide. In human plasma, activation of the contact system at the surface of significant bacterial pathogens was found to result in further HK processing and bacterial killing. A fragment comprising the D3 domain of HK is generated, and within this fragment a sequence of 26 amino acids is mainly responsible for the antibacterial activity. A synthetic peptide covering this sequence kills several bacterial species, also at physiological salt concentration, as effectively as the classical human antibacterial peptide LL-37. Moreover, in an animal model of infection, inhibition of the contact system promotes bacterial dissemination and growth. These data identify a novel and important role for the contact system in the defence against invasive bacterial infection.

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