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Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity

Microbial cyclic lipopeptides are an important class of antifungal compounds with applications in pharmacology and biotechnology. However, the cytotoxicity of many cyclic lipopeptides limits their potential as antifungal drugs. Here we present a structure–activity relationship study on the puwainaph...

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Autores principales: Hájek, Jan, Bieringer, Sebastian, Voráčová, Kateřina, Macho, Markéta, Saurav, Kumar, Delawská, Kateřina, Divoká, Petra, Fišer, Radovan, Mikušová, Gabriela, Cheel, José, Fewer, David P., Vu, Dai Long, Paichlová, Jindřiška, Riepl, Herbert, Hrouzek, Pavel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9041360/
https://www.ncbi.nlm.nih.gov/pubmed/35498921
http://dx.doi.org/10.1039/d1ra04882a
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author Hájek, Jan
Bieringer, Sebastian
Voráčová, Kateřina
Macho, Markéta
Saurav, Kumar
Delawská, Kateřina
Divoká, Petra
Fišer, Radovan
Mikušová, Gabriela
Cheel, José
Fewer, David P.
Vu, Dai Long
Paichlová, Jindřiška
Riepl, Herbert
Hrouzek, Pavel
author_facet Hájek, Jan
Bieringer, Sebastian
Voráčová, Kateřina
Macho, Markéta
Saurav, Kumar
Delawská, Kateřina
Divoká, Petra
Fišer, Radovan
Mikušová, Gabriela
Cheel, José
Fewer, David P.
Vu, Dai Long
Paichlová, Jindřiška
Riepl, Herbert
Hrouzek, Pavel
author_sort Hájek, Jan
collection PubMed
description Microbial cyclic lipopeptides are an important class of antifungal compounds with applications in pharmacology and biotechnology. However, the cytotoxicity of many cyclic lipopeptides limits their potential as antifungal drugs. Here we present a structure–activity relationship study on the puwainaphycin/minutissamide (PUW/MIN) family of cyclic lipopeptides isolated from cyanobacteria. PUWs/MINs with variable fatty acid chain lengths differed in the dynamic of their cytotoxic effect despite their similar IC(50) after 48 hours (2.8 μM for MIN A and 3.2 μM for PUW F). Furthermore, they exhibited different antifungal potency with the lowest MIC values obtained for MIN A and PUW F against the facultative human pathogen Aspergillus fumigatus (37 μM) and the plant pathogen Alternaria alternata (0.6 μM), respectively. We used a Grignard-reaction with alkylmagnesium halides to lengthen the lipopeptide FA moiety as well as the Steglich esterification on the free hydroxyl substituents to prepare semi-synthetic lipopeptide variants possessing multiple fatty acid tails. Cyclic lipopeptides with extended and branched FA tails showed improved strain-specific antifungal activity against A. fumigatus (MIC = 0.5–3.8 μM) and A. alternata (MIC = 0.1–0.5 μM), but with partial retention of the cytotoxic effect (∼10–20 μM). However, lipopeptides with esterified free hydroxyl groups possessed substantially higher antifungal potencies, especially against A. alternata (MIC = 0.2–0.6 μM), and greatly reduced or abolished cytotoxic activity (>20 μM). Our findings pave the way for a generation of semi-synthetic variants of lipopeptides with improved and selective antifungal activities.
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spelling pubmed-90413602022-04-28 Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity Hájek, Jan Bieringer, Sebastian Voráčová, Kateřina Macho, Markéta Saurav, Kumar Delawská, Kateřina Divoká, Petra Fišer, Radovan Mikušová, Gabriela Cheel, José Fewer, David P. Vu, Dai Long Paichlová, Jindřiška Riepl, Herbert Hrouzek, Pavel RSC Adv Chemistry Microbial cyclic lipopeptides are an important class of antifungal compounds with applications in pharmacology and biotechnology. However, the cytotoxicity of many cyclic lipopeptides limits their potential as antifungal drugs. Here we present a structure–activity relationship study on the puwainaphycin/minutissamide (PUW/MIN) family of cyclic lipopeptides isolated from cyanobacteria. PUWs/MINs with variable fatty acid chain lengths differed in the dynamic of their cytotoxic effect despite their similar IC(50) after 48 hours (2.8 μM for MIN A and 3.2 μM for PUW F). Furthermore, they exhibited different antifungal potency with the lowest MIC values obtained for MIN A and PUW F against the facultative human pathogen Aspergillus fumigatus (37 μM) and the plant pathogen Alternaria alternata (0.6 μM), respectively. We used a Grignard-reaction with alkylmagnesium halides to lengthen the lipopeptide FA moiety as well as the Steglich esterification on the free hydroxyl substituents to prepare semi-synthetic lipopeptide variants possessing multiple fatty acid tails. Cyclic lipopeptides with extended and branched FA tails showed improved strain-specific antifungal activity against A. fumigatus (MIC = 0.5–3.8 μM) and A. alternata (MIC = 0.1–0.5 μM), but with partial retention of the cytotoxic effect (∼10–20 μM). However, lipopeptides with esterified free hydroxyl groups possessed substantially higher antifungal potencies, especially against A. alternata (MIC = 0.2–0.6 μM), and greatly reduced or abolished cytotoxic activity (>20 μM). Our findings pave the way for a generation of semi-synthetic variants of lipopeptides with improved and selective antifungal activities. The Royal Society of Chemistry 2021-09-16 /pmc/articles/PMC9041360/ /pubmed/35498921 http://dx.doi.org/10.1039/d1ra04882a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hájek, Jan
Bieringer, Sebastian
Voráčová, Kateřina
Macho, Markéta
Saurav, Kumar
Delawská, Kateřina
Divoká, Petra
Fišer, Radovan
Mikušová, Gabriela
Cheel, José
Fewer, David P.
Vu, Dai Long
Paichlová, Jindřiška
Riepl, Herbert
Hrouzek, Pavel
Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title_full Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title_fullStr Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title_full_unstemmed Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title_short Semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
title_sort semi-synthetic puwainaphycin/minutissamide cyclic lipopeptides with improved antifungal activity and limited cytotoxicity
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9041360/
https://www.ncbi.nlm.nih.gov/pubmed/35498921
http://dx.doi.org/10.1039/d1ra04882a
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