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Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa

Didymellanosine (1), the first analogue of the decahydrofluorene-class of natural products bearing a 13-membered macrocyclic alkaloid conjugated with adenosine, and a new benzolactone derivative, ascolactone C (4) along with eight known compounds (2, 3, 5–10), were isolated from a solid rice ferment...

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Autores principales: Ariantari, Ni P., Ancheeva, Elena, Frank, Marian, Stuhldreier, Fabian, Meier, Dieter, Gröner, Yvonne, Reimche, Irene, Teusch, Nicole, Wesselborg, Sebastian, Müller, Werner E. G., Kalscheuer, Rainer, Liu, Zhen, Proksch, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049863/
https://www.ncbi.nlm.nih.gov/pubmed/35493894
http://dx.doi.org/10.1039/c9ra10685e
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author Ariantari, Ni P.
Ancheeva, Elena
Frank, Marian
Stuhldreier, Fabian
Meier, Dieter
Gröner, Yvonne
Reimche, Irene
Teusch, Nicole
Wesselborg, Sebastian
Müller, Werner E. G.
Kalscheuer, Rainer
Liu, Zhen
Proksch, Peter
author_facet Ariantari, Ni P.
Ancheeva, Elena
Frank, Marian
Stuhldreier, Fabian
Meier, Dieter
Gröner, Yvonne
Reimche, Irene
Teusch, Nicole
Wesselborg, Sebastian
Müller, Werner E. G.
Kalscheuer, Rainer
Liu, Zhen
Proksch, Peter
author_sort Ariantari, Ni P.
collection PubMed
description Didymellanosine (1), the first analogue of the decahydrofluorene-class of natural products bearing a 13-membered macrocyclic alkaloid conjugated with adenosine, and a new benzolactone derivative, ascolactone C (4) along with eight known compounds (2, 3, 5–10), were isolated from a solid rice fermentation of the endophytic fungus Didymella sp. IEA-3B.1 derived from the host plant Terminalia catappa. In addition, ascochitamine (11) was obtained when (NH(4))(2)SO(4) was added to rice medium and is reported here for the first time as a natural product. Didymellanosine (1) displayed strong activity against the murine lymphoma cell line L5178Y, Burkitt's lymphoma B cells (Ramos) and adult lymphoblastic leukemia T cells (Jurkat J16), with IC(50) values of 2.0, 3.3 and 4.4 µM, respectively. When subjected to a NFκB inhibition assay, didymellanosine (1) moderately blocked NFκB activation in the triple-negative breast cancer cell line MDA-MB 231. In an antimicrobial assay, ascomylactam C (3) was the most active compound when tested against a panel of Gram-positive bacteria including drug-resistant strains with MICs of 3.1–6.3 µM, while 1 revealed weaker activity. Interestingly, both compounds were also found active against Gram-negative Acinetobacter baumannii with MICs of 3.1 µM, in the presence of a sublethal concentration (0.1 µM) of colistin.
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spelling pubmed-90498632022-04-29 Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa Ariantari, Ni P. Ancheeva, Elena Frank, Marian Stuhldreier, Fabian Meier, Dieter Gröner, Yvonne Reimche, Irene Teusch, Nicole Wesselborg, Sebastian Müller, Werner E. G. Kalscheuer, Rainer Liu, Zhen Proksch, Peter RSC Adv Chemistry Didymellanosine (1), the first analogue of the decahydrofluorene-class of natural products bearing a 13-membered macrocyclic alkaloid conjugated with adenosine, and a new benzolactone derivative, ascolactone C (4) along with eight known compounds (2, 3, 5–10), were isolated from a solid rice fermentation of the endophytic fungus Didymella sp. IEA-3B.1 derived from the host plant Terminalia catappa. In addition, ascochitamine (11) was obtained when (NH(4))(2)SO(4) was added to rice medium and is reported here for the first time as a natural product. Didymellanosine (1) displayed strong activity against the murine lymphoma cell line L5178Y, Burkitt's lymphoma B cells (Ramos) and adult lymphoblastic leukemia T cells (Jurkat J16), with IC(50) values of 2.0, 3.3 and 4.4 µM, respectively. When subjected to a NFκB inhibition assay, didymellanosine (1) moderately blocked NFκB activation in the triple-negative breast cancer cell line MDA-MB 231. In an antimicrobial assay, ascomylactam C (3) was the most active compound when tested against a panel of Gram-positive bacteria including drug-resistant strains with MICs of 3.1–6.3 µM, while 1 revealed weaker activity. Interestingly, both compounds were also found active against Gram-negative Acinetobacter baumannii with MICs of 3.1 µM, in the presence of a sublethal concentration (0.1 µM) of colistin. The Royal Society of Chemistry 2020-02-18 /pmc/articles/PMC9049863/ /pubmed/35493894 http://dx.doi.org/10.1039/c9ra10685e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ariantari, Ni P.
Ancheeva, Elena
Frank, Marian
Stuhldreier, Fabian
Meier, Dieter
Gröner, Yvonne
Reimche, Irene
Teusch, Nicole
Wesselborg, Sebastian
Müller, Werner E. G.
Kalscheuer, Rainer
Liu, Zhen
Proksch, Peter
Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title_full Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title_fullStr Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title_full_unstemmed Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title_short Didymellanosine, a new decahydrofluorene analogue, and ascolactone C from Didymella sp. IEA-3B.1, an endophyte of Terminalia catappa
title_sort didymellanosine, a new decahydrofluorene analogue, and ascolactone c from didymella sp. iea-3b.1, an endophyte of terminalia catappa
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049863/
https://www.ncbi.nlm.nih.gov/pubmed/35493894
http://dx.doi.org/10.1039/c9ra10685e
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