The Designed Pore-Forming Antimicrobial Peptide C14R Combines Excellent Activity against the Major Opportunistic Human Pathogen Pseudomonas aeruginosa with Low Cytotoxicity

Author:

Mildenberger Vanessa1,Alpízar-Pedraza Daniel2ORCID,Martell-Huguet Ernesto M.3,Krämer Markus1,Bolotnikov Grigory1,Otero-Gonzalez Anselmo J.3ORCID,Weil Tanja4,Rodriguez-Alfonso Armando56ORCID,Preising Nico5,Ständker Ludger5ORCID,Vogel Verena7,Spellerberg Barbara7ORCID,Kissmann Ann-Kathrin14ORCID,Rosenau Frank1ORCID

Affiliation:

1. Institute of Pharmaceutical Biotechnology, Ulm University, Albert-Einstein-Allee 11, 89081 Ulm, Germany

2. Center for Pharmaceutical Research and Development (CIDEM), 26th Avenue, No. 1605, Nuevo Vedado, La Habana 10400, Cuba

3. Center for Protein Studies, Faculty of Biology, University of Havana, 25 and I, La Habana 10400, Cuba

4. Max Planck Institute for Polymer Research Mainz, Ackermannweg 10, 55128 Mainz, Germany

5. Core Facility for Functional Peptidomics (CFP), Faculty of Medicine, Ulm University, 89081 Ulm, Germany

6. Core Unit of Mass Spectrometry and Proteomics, Faculty of Medicine, Ulm University, 89081 Ulm, Germany

7. Institute of Medical Microbiology and Hygiene, University Clinic of Ulm, TBC1 Forschung, Albert-Einstein-Allee 11, 89081 Ulm, Germany

Abstract

The diminishing portfolio of mankind’s available antibiotics urges science to develop novel potent drugs. Here, we present a peptide fitting the typical blueprint of amphipathic and membrane-active antimicrobial peptides, denominated C14R. This 2 kDa peptide consists of 16 amino acid residues, with seven being either hydrophobic, aromatic, or non-polar, and nine being polar or positively charged, strictly separated on opposite sides of the predicted α-helix. The affinity of the peptide C14R to P. aeruginosa membranes and its intrinsic tendency to productively insert into membranes of such composition were analyzed by dynamic simulations. Its biological impact on the viability of two different P. aeruginosa reference strains was demonstrated by determining the minimal inhibitory concentrations (MICs), which were found to be in the range of 10–15 µg/mL. C14R’s pore-forming capability was verified in a permeabilization assay based on the peptide-triggered uptake of fluorescent dyes into the bacterial cells. Finally, the peptide was used in radial diffusion assays, which are commonly used for susceptibility testing of antimicrobial peptides in clinical microbiology. In comparison to reference strains, six clinical P. aeruginosa isolates were clearly affected, thereby paving the way for further in-depth analyses of C14R as a promising new AMP drug in the future.

Funder

German Research Society

Alexander von Humboldt-Stiftung, Research Group Linkage Program

German Ministry for Foreign Affairs via the program Global Health and Pandemic Prevention Centers

Publisher

MDPI AG

Subject

Drug Discovery,Pharmaceutical Science,Molecular Medicine

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