Gene-encoded peptide antibiotics represent fascinating molecules for the development of new antimicrobials with a new mode of action: and one of the richest sources is amphibian skin. In particular, the skin of the fire-bellied toad Bombina genus contains mildly cationic antimicrobial peptides (AMPs), named bombinins H, with attractive properties. Indeed, some members of this peptide family coexist in skin secretions as isomers in which a single D-amino acid (alloisoleucine or leucine) is incorporated as a result of a post-translational modification of the respective gene-encoded Lamino acid. Here, a brief overview of the genes coding for these peptides, their spectrum of antimicrobial activities, mechanism of action and interactions with biological or model membranes is reported. Remarkably, a single D-amino acid substitution represents a unique approach developed by Nature not only to modulate the peptide stability in vivo, but also to confer the all-L peptide and its diastereomer distinctive biological features. Overall, such findings should assist in the generation of new peptide-based anti-infective agents, which are urgently needed because of the growing emergence of microbial strains resistant to conventional antimicrobials.

A lesson from Bombinins H, mildly cationic diastereomeric antimicrobial peptides from Bombina skin / Mangoni, Maria Luisa. - In: CURRENT PROTEIN & PEPTIDE SCIENCE. - ISSN 1389-2037. - STAMPA. - 14:(2013), pp. 734-743. [10.2174/138920371408131227171817]

A lesson from Bombinins H, mildly cationic diastereomeric antimicrobial peptides from Bombina skin.

MANGONI, Maria Luisa
2013

Abstract

Gene-encoded peptide antibiotics represent fascinating molecules for the development of new antimicrobials with a new mode of action: and one of the richest sources is amphibian skin. In particular, the skin of the fire-bellied toad Bombina genus contains mildly cationic antimicrobial peptides (AMPs), named bombinins H, with attractive properties. Indeed, some members of this peptide family coexist in skin secretions as isomers in which a single D-amino acid (alloisoleucine or leucine) is incorporated as a result of a post-translational modification of the respective gene-encoded Lamino acid. Here, a brief overview of the genes coding for these peptides, their spectrum of antimicrobial activities, mechanism of action and interactions with biological or model membranes is reported. Remarkably, a single D-amino acid substitution represents a unique approach developed by Nature not only to modulate the peptide stability in vivo, but also to confer the all-L peptide and its diastereomer distinctive biological features. Overall, such findings should assist in the generation of new peptide-based anti-infective agents, which are urgently needed because of the growing emergence of microbial strains resistant to conventional antimicrobials.
2013
amphibian skin; antimicrobial peptide; bombinin; D amino acid; innate immunity
01 Pubblicazione su rivista::01a Articolo in rivista
A lesson from Bombinins H, mildly cationic diastereomeric antimicrobial peptides from Bombina skin / Mangoni, Maria Luisa. - In: CURRENT PROTEIN & PEPTIDE SCIENCE. - ISSN 1389-2037. - STAMPA. - 14:(2013), pp. 734-743. [10.2174/138920371408131227171817]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/539931
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