Chemical synthesis, characterization and activity of RK-1, a novel ?-defensin-related peptide

The 32-residue peptide, RK-1, a novel kidney-derived three disulfide-bonded member of the antimicrobial -defensin family, was synthesized by the continuous flow Fmoc-solid phase method. The crude, cleaved and S-reduced linear peptide was both efficiently folded and oxidized in an acidic solution of...

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Veröffentlicht in:Journal of peptide science 2000-01, Vol.6 (1), p.19-25
Hauptverfasser: Dawson, Nicola F., Craik, David J., Mcmanus, Ailsa M., Dashper, Stuart G., Reynolds, Eric C., Tregear, Geoffrey W., Otvos Jr, Laszlo, Wade, John D.
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Sprache:eng ; jpn
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Zusammenfassung:The 32-residue peptide, RK-1, a novel kidney-derived three disulfide-bonded member of the antimicrobial -defensin family, was synthesized by the continuous flow Fmoc-solid phase method. The crude, cleaved and S-reduced linear peptide was both efficiently folded and oxidized in an acidic solution of aqueous dimethyl sulfoxide. Following purification of the resulting product, it was shown by a variety of analytical techniques, including matrix assisted laser desorption time of flight mass spectrometry, to possess a very high degree of purity. The disulfide bond pairing of the synthetic peptide was determined by 1H-NMR spectroscopy and confirmed to be a Cys1-Cys6, Cys2-Cys4, Cys3-Cys5 arrangement similar to other mammalian -defensin peptides. The synthetic RK-1 was also shown to inhibit the growth of Escherichia coli type strain NCTC 10418.
ISSN:1075-2617
1099-1387
DOI:10.1002/(SICI)1099-1387(200001)6:1<19::AID-PSC230>3.0.CO;2-1