Serum Stabilities of Short Tryptophan- and Arginine-Rich Antimicrobial Peptide Analogs
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Open Access
- 10 September 2010
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 5 (9) , e12684
- https://doi.org/10.1371/journal.pone.0012684
Abstract
Several short antimicrobial peptides that are rich in tryptophan and arginine residues were designed with a series of simple modifications such as end capping and cyclization. The two sets of hexapeptides are based on the Trp- and Arg-rich primary sequences from the “antimicrobial centre” of bovine lactoferricin as well as an antimicrobial sequence obtained through the screening of a hexapeptide combinatorial library. HPLC, mass spectrometry and antimicrobial assays were carried out to explore the consequences of the modifications on the serum stability and microbicidal activity of the peptides. The results show that C-terminal amidation increases the antimicrobial activity but that it makes little difference to its proteolytic degradation in human serum. On the other hand, N-terminal acetylation decreases the peptide activities but significantly increases their protease resistance. Peptide cyclization of the hexameric peptides was found to be highly effective for both serum stability and antimicrobial activity. However the two cyclization strategies employed have different effects, with disulfide cyclization resulting in more active peptides while backbone cyclization results in more proteolytically stable peptides. However, the benefit of backbone cyclization did not extend to longer 11-mer peptides derived from the same region of lactoferricin. Mass spectrometry data support the serum stability assay results and allowed us to determine preferred proteolysis sites in the peptides. Furthermore, isothermal titration calorimetry experiments showed that the peptides all had weak interactions with albumin, the most abundant protein in human serum. Taken together, the results provide insight into the behavior of the peptides in human serum and will therefore aid in advancing antimicrobial peptide design towards systemic applications.Keywords
This publication has 63 references indexed in Scilit:
- Intracellular delivery of bovine lactoferricin’s antimicrobial core (RRWQWR) kills T-leukemia cellsBiochemical and Biophysical Research Communications, 2009
- Alternative stabilities of a proline‐rich antibacterial peptide in vitro and in vivoProtein Science, 2008
- Antimicrobial Effect of Halocidin-Derived Peptide in a Mouse Model ofListeriaInfectionAntimicrobial Agents and Chemotherapy, 2007
- De novo-derived cationic antimicrobial peptide activity in a murine model of Pseudomonas aeruginosa bacteraemiaJournal of Antimicrobial Chemotherapy, 2007
- Structure-Function Analysis of Tritrpticin Analogs: Potential Relationships between Antimicrobial Activities, Model Membrane Interactions, and Their Micelle-Bound NMR StructuresBiophysical Journal, 2006
- Treatment and Prevention of Staphylococcus epidermidis Experimental Biomaterial-Associated Infection by Bactericidal Peptide 2Antimicrobial Agents and Chemotherapy, 2006
- High-throughput generation of small antibacterial peptides with improved activityNature Biotechnology, 2005
- Impact of LL-37 on anti-infective immunityJournal of Leukocyte Biology, 2004
- Correlations of Cationic Charges with Salt Sensitivity and Microbial Specificity of Cystine-stabilized β-Strand Antimicrobial PeptidesJournal of Biological Chemistry, 2002
- Antimicrobial peptides of multicellular organismsNature, 2002