Rational Substitution of ε‑Lysine for α‑Lysine Enhances the Cell and Membrane Selectivity of Pore-Forming Melittin

Here, we present a rational approach that enhances the membrane selectivity of a prolific pore-forming peptide, melittin, based on experimental observations that the cationic polymer, ε-polylysine, disrupts bacterial membranes with greater affinity over mammalian cells when compared to poly-l-lysine...

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Veröffentlicht in:Journal of medicinal chemistry 2020-04, Vol.63 (7), p.3522-3537
Hauptverfasser: Mayandi, Venkatesh, Xi, Qingxiao, Leng Goh, Eunice Tze, Koh, Siew Kwan, Jie Toh, Thomas Yong, Barathi, Veluchamy Amutha, Urf Turabe Fazil, Mobashar Hussain, Somaraju Chalasani, Madhavi Latha, Varadarajan, Jayasudha, Jeng Ting, Darren Shu, Beuerman, Roger W, Chan, Lai Wah, Agrawal, Rupesh, Sebastian Barkham, Timothy Mark, Zhou, Lei, Verma, Navin Kumar, Lakshminarayanan, Rajamani
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Sprache:eng
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Zusammenfassung:Here, we present a rational approach that enhances the membrane selectivity of a prolific pore-forming peptide, melittin, based on experimental observations that the cationic polymer, ε-polylysine, disrupts bacterial membranes with greater affinity over mammalian cells when compared to poly-l-lysine and poly-d-lysine. We systematically replaced three α-lysine residues in melittin with ε-lysine residues and identified key residues that are important for cytotoxicity. We then assessed the antimicrobial properties of the modified peptides which carry two or three ε-lysyl residues. Two modified melittin peptides displayed rapid bactericidal properties against antibiotic-resistant strains, low innate resistance development by pathogenic bacteria, remained nonimmunogenic for T lymphocytes, and increased bioavailability in tear fluids. In proof-of-concept in vivo experiments, one of the peptides was noncytotoxic for ocular surfaces and had comparable antimicrobial efficacy to that of fluoroquinolone antibiotics. The results uncover a simple and potential strategy that can enhance the membrane selectivity of cytolytic peptides by ε-lysylation.
ISSN:0022-2623
1520-4804
DOI:10.1021/acs.jmedchem.9b01846