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SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A

In order to expand the repertoire of antifungal compounds a novel, high-throughput phenotypic drug screen targeting fungal phosphatidylserine (PS) synthase (Cho1p) was developed based on antagonism of the toxin papuamide A (Pap-A). Pap-A is a cyclic depsipeptide that binds to PS in the membrane of w...

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Autores principales: Cassilly, Chelsi D., Maddox, Marcus M., Cherian, Philip T., Bowling, John J., Hamann, Mark T., Lee, Richard E., Reynolds, Todd B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868317/
https://www.ncbi.nlm.nih.gov/pubmed/27183222
http://dx.doi.org/10.1371/journal.pone.0154932
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author Cassilly, Chelsi D.
Maddox, Marcus M.
Cherian, Philip T.
Bowling, John J.
Hamann, Mark T.
Lee, Richard E.
Reynolds, Todd B.
author_facet Cassilly, Chelsi D.
Maddox, Marcus M.
Cherian, Philip T.
Bowling, John J.
Hamann, Mark T.
Lee, Richard E.
Reynolds, Todd B.
author_sort Cassilly, Chelsi D.
collection PubMed
description In order to expand the repertoire of antifungal compounds a novel, high-throughput phenotypic drug screen targeting fungal phosphatidylserine (PS) synthase (Cho1p) was developed based on antagonism of the toxin papuamide A (Pap-A). Pap-A is a cyclic depsipeptide that binds to PS in the membrane of wild-type Candida albicans, and permeabilizes its plasma membrane, ultimately causing cell death. Organisms with a homozygous deletion of the CHO1 gene (cho1ΔΔ) do not produce PS and are able to survive in the presence of Pap-A. Using this phenotype (i.e. resistance to Pap-A) as an indicator of Cho1p inhibition, we screened over 5,600 small molecules for Pap-A resistance and identified SB-224289 as a positive hit. SB-224289, previously reported as a selective human 5-HT(1B) receptor antagonist, also confers resistance to the similar toxin theopapuamide (TPap-A), but not to other cytotoxic depsipeptides tested. Structurally similar molecules and truncated variants of SB-224289 do not confer resistance to Pap-A, suggesting that the toxin-blocking ability of SB-224289 is very specific. Further biochemical characterization revealed that SB-224289 does not inhibit Cho1p, indicating that Pap-A resistance is conferred by another undetermined mechanism. Although the mode of resistance is unclear, interaction between SB-224289 and Pap-A or TPap-A suggests this screening assay could be adapted for discovering other compounds which could antagonize the effects of other environmentally- or medically-relevant depsipeptide toxins.
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spelling pubmed-48683172016-05-26 SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A Cassilly, Chelsi D. Maddox, Marcus M. Cherian, Philip T. Bowling, John J. Hamann, Mark T. Lee, Richard E. Reynolds, Todd B. PLoS One Research Article In order to expand the repertoire of antifungal compounds a novel, high-throughput phenotypic drug screen targeting fungal phosphatidylserine (PS) synthase (Cho1p) was developed based on antagonism of the toxin papuamide A (Pap-A). Pap-A is a cyclic depsipeptide that binds to PS in the membrane of wild-type Candida albicans, and permeabilizes its plasma membrane, ultimately causing cell death. Organisms with a homozygous deletion of the CHO1 gene (cho1ΔΔ) do not produce PS and are able to survive in the presence of Pap-A. Using this phenotype (i.e. resistance to Pap-A) as an indicator of Cho1p inhibition, we screened over 5,600 small molecules for Pap-A resistance and identified SB-224289 as a positive hit. SB-224289, previously reported as a selective human 5-HT(1B) receptor antagonist, also confers resistance to the similar toxin theopapuamide (TPap-A), but not to other cytotoxic depsipeptides tested. Structurally similar molecules and truncated variants of SB-224289 do not confer resistance to Pap-A, suggesting that the toxin-blocking ability of SB-224289 is very specific. Further biochemical characterization revealed that SB-224289 does not inhibit Cho1p, indicating that Pap-A resistance is conferred by another undetermined mechanism. Although the mode of resistance is unclear, interaction between SB-224289 and Pap-A or TPap-A suggests this screening assay could be adapted for discovering other compounds which could antagonize the effects of other environmentally- or medically-relevant depsipeptide toxins. Public Library of Science 2016-05-16 /pmc/articles/PMC4868317/ /pubmed/27183222 http://dx.doi.org/10.1371/journal.pone.0154932 Text en © 2016 Cassilly et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Cassilly, Chelsi D.
Maddox, Marcus M.
Cherian, Philip T.
Bowling, John J.
Hamann, Mark T.
Lee, Richard E.
Reynolds, Todd B.
SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title_full SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title_fullStr SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title_full_unstemmed SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title_short SB-224289 Antagonizes the Antifungal Mechanism of the Marine Depsipeptide Papuamide A
title_sort sb-224289 antagonizes the antifungal mechanism of the marine depsipeptide papuamide a
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868317/
https://www.ncbi.nlm.nih.gov/pubmed/27183222
http://dx.doi.org/10.1371/journal.pone.0154932
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