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Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles

The ESX-5 secretion system is essential for the viability and virulence of slow-growing pathogenic mycobacterial species. In this study, we identified a 1,2,4-oxadiazole derivative as a putative effector of the ESX-5 secretion system. We confirmed that this 1,2,4-oxadiazole and several newly synthes...

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Autores principales: Ho, Vien Q. T., Rong, Mark K., Habjan, Eva, Bommer, Samantha D., Pham, Thang V., Piersma, Sander R., Bitter, Wilbert, Ruijter, Eelco, Speer, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953084/
https://www.ncbi.nlm.nih.gov/pubmed/36830581
http://dx.doi.org/10.3390/biom13020211
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author Ho, Vien Q. T.
Rong, Mark K.
Habjan, Eva
Bommer, Samantha D.
Pham, Thang V.
Piersma, Sander R.
Bitter, Wilbert
Ruijter, Eelco
Speer, Alexander
author_facet Ho, Vien Q. T.
Rong, Mark K.
Habjan, Eva
Bommer, Samantha D.
Pham, Thang V.
Piersma, Sander R.
Bitter, Wilbert
Ruijter, Eelco
Speer, Alexander
author_sort Ho, Vien Q. T.
collection PubMed
description The ESX-5 secretion system is essential for the viability and virulence of slow-growing pathogenic mycobacterial species. In this study, we identified a 1,2,4-oxadiazole derivative as a putative effector of the ESX-5 secretion system. We confirmed that this 1,2,4-oxadiazole and several newly synthesized derivatives inhibited the ESX-5-dependent secretion of active lipase LipY by Mycobacterium marinum (M. marinum). Despite reduced lipase activity, we did not observe a defect in LipY secretion itself. Moreover, we found that several other ESX-5 substrates, especially the high molecular-weight PE_PGRS MMAR_5294, were even more abundantly secreted by M. marinum treated with several 1,2,4-oxadiazoles. Analysis of M. marinum grown in the presence of different oxadiazole derivatives revealed that the secretion of LipY and the induction of PE_PGRS secretion were, in fact, two independent phenotypes, as we were able to identify structural features in the compounds that specifically induced only one of these phenotypes. Whereas the three most potent 1,2,4-oxadiazoles displayed only a mild effect on the growth of M. marinum or M. tuberculosis in culture, these compounds significantly reduced bacterial burden in M. marinum-infected zebrafish models. In conclusion, we report a 1,2,4-oxadiazole scaffold that dysregulates ESX-5 protein secretion.
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spelling pubmed-99530842023-02-25 Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles Ho, Vien Q. T. Rong, Mark K. Habjan, Eva Bommer, Samantha D. Pham, Thang V. Piersma, Sander R. Bitter, Wilbert Ruijter, Eelco Speer, Alexander Biomolecules Article The ESX-5 secretion system is essential for the viability and virulence of slow-growing pathogenic mycobacterial species. In this study, we identified a 1,2,4-oxadiazole derivative as a putative effector of the ESX-5 secretion system. We confirmed that this 1,2,4-oxadiazole and several newly synthesized derivatives inhibited the ESX-5-dependent secretion of active lipase LipY by Mycobacterium marinum (M. marinum). Despite reduced lipase activity, we did not observe a defect in LipY secretion itself. Moreover, we found that several other ESX-5 substrates, especially the high molecular-weight PE_PGRS MMAR_5294, were even more abundantly secreted by M. marinum treated with several 1,2,4-oxadiazoles. Analysis of M. marinum grown in the presence of different oxadiazole derivatives revealed that the secretion of LipY and the induction of PE_PGRS secretion were, in fact, two independent phenotypes, as we were able to identify structural features in the compounds that specifically induced only one of these phenotypes. Whereas the three most potent 1,2,4-oxadiazoles displayed only a mild effect on the growth of M. marinum or M. tuberculosis in culture, these compounds significantly reduced bacterial burden in M. marinum-infected zebrafish models. In conclusion, we report a 1,2,4-oxadiazole scaffold that dysregulates ESX-5 protein secretion. MDPI 2023-01-21 /pmc/articles/PMC9953084/ /pubmed/36830581 http://dx.doi.org/10.3390/biom13020211 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
Ho, Vien Q. T.
Rong, Mark K.
Habjan, Eva
Bommer, Samantha D.
Pham, Thang V.
Piersma, Sander R.
Bitter, Wilbert
Ruijter, Eelco
Speer, Alexander
Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title_full Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title_fullStr Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title_full_unstemmed Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title_short Dysregulation of Mycobacterium marinum ESX-5 Secretion by Novel 1,2,4-oxadiazoles
title_sort dysregulation of mycobacterium marinum esx-5 secretion by novel 1,2,4-oxadiazoles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9953084/
https://www.ncbi.nlm.nih.gov/pubmed/36830581
http://dx.doi.org/10.3390/biom13020211
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