Chicken cathelicidin-2-derived peptides with enhanced immunomodulatory and antibacterial activities against biological warfare agents

Publication date

2010

Authors

Molhoek, E.M.
van Dijk, AlbertISNI 0000000395107929
Veldhuizen, Edwin J AISNI 0000000393386442
Dijk-Knijnenburg, H.
Mars-Groenendijk, R.H.
Boele, L.C.
Kaman-van Zanten, W.E.
Haagsman, H.P.ISNI 0000000395332181
Bikker, F.J.

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Supervisors

Document Type

Article

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Abstract

Host defence peptides (HDPs) are considered to be excellent candidates for the development of novel therapeutic agents. Recently, it was demonstrated that the peptide C1-15, an N-terminal segment of chicken HDP cathelicidin-2, exhibits potent antibacterial activity while lacking cytotoxicity towards eukaryotic cells. In the present study, we report that C1-15 is active against bacteria such as Bacillus anthracis and Yersinia pestis that may potentially be used by bioterrorists. Substitution of single and multiple phenylalanine (Phe) residues to tryptophan (Trp) in C1-15 resulted in variants with improved antibacterial activity against B. anthracis and Y. pestis as well as decreased salt sensitivity. In addition, these peptides exhibited enhanced neutralisation of lipopolysaccharide (LPS)-induced release of pro-inflammatory cytokines in human peripheral blood mononuclear cells (PBMCs). The antibacterial and LPS-neutralising activities of these C1-15-derived peptides are exerted at concentrations far below the concentrations that are toxic to human PBMCs. Taken together, we show that Phe→Trp substitutions in C1-15 variants enhances the antibacterial and LPS-neutralising activities against

Keywords

Host defence peptide, Cathelicidin, Antibacterial activity, Cytotoxicity, Immunomodulatory activity, Biological warfare agents

Citation

Molhoek, E M, van Dijk, A, Veldhuizen, E J A, Dijk-Knijnenburg, H, Mars-Groenendijk, R H, Boele, L C, Kaman-van Zanten, W E, Haagsman, H P & Bikker, F J 2010, 'Chicken cathelicidin-2-derived peptides with enhanced immunomodulatory and antibacterial activities against biological warfare agents', International Journal of Antimicrobial Agents, vol. 36, no. 3, pp. 271-274. https://doi.org/10.1016/j.ijantimicag.2010.06.001