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Inhibition of autotransporter biogenesis by small molecules

Disarming pathogens by targeting virulence factors is a promising alternative to classic antibiotics. Many virulence factors in Gram‐negative bacteria are secreted via the autotransporter (AT) pathway, also known as Type 5 secretion. These factors are secreted with the assistance of two membrane‐bas...

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Autores principales: Steenhuis, Maurice, Abdallah, Abdallah M., de Munnik, Sabrina M., Kuhne, Sebastiaan, Sterk, Geert‐Jan, van den Berg van Saparoea, Bart, Westerhausen, Sibel, Wagner, Samuel, van der Wel, Nicole N., Wijtmans, Maikel, van Ulsen, Peter, Jong, Wouter S. P., Luirink, Joen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850105/
https://www.ncbi.nlm.nih.gov/pubmed/30983025
http://dx.doi.org/10.1111/mmi.14255
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author Steenhuis, Maurice
Abdallah, Abdallah M.
de Munnik, Sabrina M.
Kuhne, Sebastiaan
Sterk, Geert‐Jan
van den Berg van Saparoea, Bart
Westerhausen, Sibel
Wagner, Samuel
van der Wel, Nicole N.
Wijtmans, Maikel
van Ulsen, Peter
Jong, Wouter S. P.
Luirink, Joen
author_facet Steenhuis, Maurice
Abdallah, Abdallah M.
de Munnik, Sabrina M.
Kuhne, Sebastiaan
Sterk, Geert‐Jan
van den Berg van Saparoea, Bart
Westerhausen, Sibel
Wagner, Samuel
van der Wel, Nicole N.
Wijtmans, Maikel
van Ulsen, Peter
Jong, Wouter S. P.
Luirink, Joen
author_sort Steenhuis, Maurice
collection PubMed
description Disarming pathogens by targeting virulence factors is a promising alternative to classic antibiotics. Many virulence factors in Gram‐negative bacteria are secreted via the autotransporter (AT) pathway, also known as Type 5 secretion. These factors are secreted with the assistance of two membrane‐based protein complexes: Sec and Bam. To identify inhibitors of the AT pathway, we used transcriptomics analysis to develop a fluorescence‐based high‐throughput assay that reports on the stress induced by the model AT hemoglobin protease (Hbp) when its secretion across the outer membrane is inhibited. Screening a library of 1600 fragments yielded the compound VUF15259 that provokes cell envelope stress and secretion inhibition of the ATs Hbp and Antigen‐43. VUF15259 also impairs β‐barrel folding activity of various outer membrane proteins. Furthermore, we found that mutants that are compromised in outer membrane protein biogenesis are more susceptible to VUF15259. Finally, VUF15259 induces the release of vesicles that appear to assemble in short chains. Taken together, VUF15259 is the first reported compound that inhibits AT secretion and our data are mostly consistent with VUF15259 interfering with the Bam‐complex as potential mode of action. The validation of the presented assay incites its use to screen larger compound libraries with drug‐like compounds.
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spelling pubmed-68501052019-11-15 Inhibition of autotransporter biogenesis by small molecules Steenhuis, Maurice Abdallah, Abdallah M. de Munnik, Sabrina M. Kuhne, Sebastiaan Sterk, Geert‐Jan van den Berg van Saparoea, Bart Westerhausen, Sibel Wagner, Samuel van der Wel, Nicole N. Wijtmans, Maikel van Ulsen, Peter Jong, Wouter S. P. Luirink, Joen Mol Microbiol Research Articles Disarming pathogens by targeting virulence factors is a promising alternative to classic antibiotics. Many virulence factors in Gram‐negative bacteria are secreted via the autotransporter (AT) pathway, also known as Type 5 secretion. These factors are secreted with the assistance of two membrane‐based protein complexes: Sec and Bam. To identify inhibitors of the AT pathway, we used transcriptomics analysis to develop a fluorescence‐based high‐throughput assay that reports on the stress induced by the model AT hemoglobin protease (Hbp) when its secretion across the outer membrane is inhibited. Screening a library of 1600 fragments yielded the compound VUF15259 that provokes cell envelope stress and secretion inhibition of the ATs Hbp and Antigen‐43. VUF15259 also impairs β‐barrel folding activity of various outer membrane proteins. Furthermore, we found that mutants that are compromised in outer membrane protein biogenesis are more susceptible to VUF15259. Finally, VUF15259 induces the release of vesicles that appear to assemble in short chains. Taken together, VUF15259 is the first reported compound that inhibits AT secretion and our data are mostly consistent with VUF15259 interfering with the Bam‐complex as potential mode of action. The validation of the presented assay incites its use to screen larger compound libraries with drug‐like compounds. John Wiley and Sons Inc. 2019-05-03 2019-07 /pmc/articles/PMC6850105/ /pubmed/30983025 http://dx.doi.org/10.1111/mmi.14255 Text en © 2019 The Authors. Molecular Microbiology Published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Steenhuis, Maurice
Abdallah, Abdallah M.
de Munnik, Sabrina M.
Kuhne, Sebastiaan
Sterk, Geert‐Jan
van den Berg van Saparoea, Bart
Westerhausen, Sibel
Wagner, Samuel
van der Wel, Nicole N.
Wijtmans, Maikel
van Ulsen, Peter
Jong, Wouter S. P.
Luirink, Joen
Inhibition of autotransporter biogenesis by small molecules
title Inhibition of autotransporter biogenesis by small molecules
title_full Inhibition of autotransporter biogenesis by small molecules
title_fullStr Inhibition of autotransporter biogenesis by small molecules
title_full_unstemmed Inhibition of autotransporter biogenesis by small molecules
title_short Inhibition of autotransporter biogenesis by small molecules
title_sort inhibition of autotransporter biogenesis by small molecules
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850105/
https://www.ncbi.nlm.nih.gov/pubmed/30983025
http://dx.doi.org/10.1111/mmi.14255
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