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Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi

Combining chemical and microbiological methods using entomopathogenic filamentous fungi makes obtaining flavonoid glycosides possible. In the presented study, biotransformations were carried out in cultures of Beauveria bassiana KCH J1.5, Isaria fumosorosea KCH J2, and Isaria farinosa KCH J2.6 strai...

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Autores principales: Perz, Martyna, Krawczyk-Łebek, Agnieszka, Dymarska, Monika, Janeczko, Tomasz, Kostrzewa-Susłow, Edyta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254066/
https://www.ncbi.nlm.nih.gov/pubmed/37298456
http://dx.doi.org/10.3390/ijms24119500
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author Perz, Martyna
Krawczyk-Łebek, Agnieszka
Dymarska, Monika
Janeczko, Tomasz
Kostrzewa-Susłow, Edyta
author_facet Perz, Martyna
Krawczyk-Łebek, Agnieszka
Dymarska, Monika
Janeczko, Tomasz
Kostrzewa-Susłow, Edyta
author_sort Perz, Martyna
collection PubMed
description Combining chemical and microbiological methods using entomopathogenic filamentous fungi makes obtaining flavonoid glycosides possible. In the presented study, biotransformations were carried out in cultures of Beauveria bassiana KCH J1.5, Isaria fumosorosea KCH J2, and Isaria farinosa KCH J2.6 strains on six flavonoid compounds obtained in chemical synthesis. As a result of the biotransformation of 6-methyl-8-nitroflavanone using the strain I. fumosorosea KCH J2, two products were obtained: 6-methyl-8-nitro-2-phenylchromane 4-O-β-D-(4″-O-methyl)-glucopyranoside and 8-nitroflavan-4-ol 6-methylene-O-β-D-(4″-O-methyl)-glucopyranoside. 8-Bromo-6-chloroflavanone was transformed by this strain to 8-bromo-6-chloroflavan-4-ol 4′-O-β-D-(4″-O-methyl)-glucopyranoside. As a result of microbial transformation by I. farinosa KCH J2.6 effectively biotransformed only 8-bromo-6-chloroflavone into 8-bromo-6-chloroflavone 4′-O-β-D-(4″-O-methyl)-glucopyranoside. B. bassiana KCH J1.5 was able to transform 6-methyl-8-nitroflavone to 6-methyl-8-nitroflavone 4′-O-β-D-(4″-O-methyl)-glucopyranoside, and 3′-bromo-5′-chloro-2′-hydroxychalcone to 8-bromo-6-chloroflavanone 3′-O-β-D-(4″-O-methyl)-glucopyranoside. None of the filamentous fungi used transformed 2′-hydroxy-5′-methyl-3′-nitrochalcone effectively. Obtained flavonoid derivatives could be used to fight against antibiotic-resistant bacteria. To the best of our knowledge, all the substrates and products presented in this work are new compounds and are described for the first time.
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spelling pubmed-102540662023-06-10 Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi Perz, Martyna Krawczyk-Łebek, Agnieszka Dymarska, Monika Janeczko, Tomasz Kostrzewa-Susłow, Edyta Int J Mol Sci Article Combining chemical and microbiological methods using entomopathogenic filamentous fungi makes obtaining flavonoid glycosides possible. In the presented study, biotransformations were carried out in cultures of Beauveria bassiana KCH J1.5, Isaria fumosorosea KCH J2, and Isaria farinosa KCH J2.6 strains on six flavonoid compounds obtained in chemical synthesis. As a result of the biotransformation of 6-methyl-8-nitroflavanone using the strain I. fumosorosea KCH J2, two products were obtained: 6-methyl-8-nitro-2-phenylchromane 4-O-β-D-(4″-O-methyl)-glucopyranoside and 8-nitroflavan-4-ol 6-methylene-O-β-D-(4″-O-methyl)-glucopyranoside. 8-Bromo-6-chloroflavanone was transformed by this strain to 8-bromo-6-chloroflavan-4-ol 4′-O-β-D-(4″-O-methyl)-glucopyranoside. As a result of microbial transformation by I. farinosa KCH J2.6 effectively biotransformed only 8-bromo-6-chloroflavone into 8-bromo-6-chloroflavone 4′-O-β-D-(4″-O-methyl)-glucopyranoside. B. bassiana KCH J1.5 was able to transform 6-methyl-8-nitroflavone to 6-methyl-8-nitroflavone 4′-O-β-D-(4″-O-methyl)-glucopyranoside, and 3′-bromo-5′-chloro-2′-hydroxychalcone to 8-bromo-6-chloroflavanone 3′-O-β-D-(4″-O-methyl)-glucopyranoside. None of the filamentous fungi used transformed 2′-hydroxy-5′-methyl-3′-nitrochalcone effectively. Obtained flavonoid derivatives could be used to fight against antibiotic-resistant bacteria. To the best of our knowledge, all the substrates and products presented in this work are new compounds and are described for the first time. MDPI 2023-05-30 /pmc/articles/PMC10254066/ /pubmed/37298456 http://dx.doi.org/10.3390/ijms24119500 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Perz, Martyna
Krawczyk-Łebek, Agnieszka
Dymarska, Monika
Janeczko, Tomasz
Kostrzewa-Susłow, Edyta
Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title_full Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title_fullStr Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title_full_unstemmed Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title_short Biotransformation of Flavonoids with -NO(2), -CH(3) Groups and -Br, -Cl Atoms by Entomopathogenic Filamentous Fungi
title_sort biotransformation of flavonoids with -no(2), -ch(3) groups and -br, -cl atoms by entomopathogenic filamentous fungi
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254066/
https://www.ncbi.nlm.nih.gov/pubmed/37298456
http://dx.doi.org/10.3390/ijms24119500
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