Synthesis and characterization of an antibacterial and non-toxic dimeric peptide derived from the C-terminal region of Bothropstoxin-I

Infectious diseases are among the leading global causes of death, increasing the search for novel antibacterial agents. Among these, biologically active peptides are an excellent research tool. Using solid-phase peptide synthesis (SPPS), this work aimed to synthesize the peptide derived from the C-t...

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Veröffentlicht in:Toxicon (Oxford) 2015-09, Vol.103, p.160-168
Hauptverfasser: Santos-Filho, Norival A., Lorenzon, Esteban N., Ramos, Matheus A.S., Santos, Claudia T., Piccoli, Julia P., Bauab, Tais M., Fusco-Almeida, Ana M., Cilli, Eduardo M.
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Sprache:eng
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Zusammenfassung:Infectious diseases are among the leading global causes of death, increasing the search for novel antibacterial agents. Among these, biologically active peptides are an excellent research tool. Using solid-phase peptide synthesis (SPPS), this work aimed to synthesize the peptide derived from the C-terminal region of Bothropstoxin-I (BthTX-I) (p-BthTX-I, sequence: KKYRYHLKPFCKK), and its disulfide-linked dimeric form, obtained via air oxidation (p-BthTX-I)2. Two other peptides were synthesized to evaluate the dimerization effect on antimicrobial activity. In both sequences, the cysteine (Cys) residue was replaced by the serine (Ser) residue, differing, however, in their C-terminus position. The antimicrobial activity of the peptides against gram-negative (Escherichia (E.) coli) and gram-positive (Staphylococcus (S.) aureus) bacteria and yeast (Candida (C.) albicans) was evaluated. Interestingly, only peptides containing the Cys residue showed antimicrobial activity, suggesting the importance of Cys residue and its dimerization for the observed activity. Apparently, p-BthTX-I and (p-BthTX-I)2 did not promote lysis or form pores and were not able to interact with membranes. Furthermore, they neither showed antifungal activity against C. albicans nor toxicity against erythrocytes, epithelial cells, or macrophages, indicating a potential specificity against prokaryotic cells. •p-BthTX-I and its dimeric form (p-BthTX-I)2 were synthesized.•Dimeric form of the peptide was more active than the monomeric form.•These peptides did not promote hemolysis or pore formation.•The peptides did not show antifungal and cytotoxicity.
ISSN:0041-0101
1879-3150
DOI:10.1016/j.toxicon.2015.07.004