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Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ

To streamline the elucidation of antibacterial compounds’ mechanism of action, comprehensive high-throughput assays interrogating multiple putative targets are necessary. However, current chemogenomic approaches for antibiotic target identification have not fully utilized the multiplexing potential...

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Autores principales: Hogan, Andrew M., Scoffone, Viola C., Makarov, Vadim, Gislason, April S., Tesfu, Haben, Stietz, Maria S., Brassinga, Ann Karen C., Domaratzki, Michael, Li, Xuan, Azzalin, Alberto, Biggiogera, Marco, Riabova, Olga, Monakhova, Natalia, Chiarelli, Laurent R., Riccardi, Giovanna, Buroni, Silvia, Cardona, Silvia T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6256756/
https://www.ncbi.nlm.nih.gov/pubmed/30297366
http://dx.doi.org/10.1128/AAC.01231-18
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author Hogan, Andrew M.
Scoffone, Viola C.
Makarov, Vadim
Gislason, April S.
Tesfu, Haben
Stietz, Maria S.
Brassinga, Ann Karen C.
Domaratzki, Michael
Li, Xuan
Azzalin, Alberto
Biggiogera, Marco
Riabova, Olga
Monakhova, Natalia
Chiarelli, Laurent R.
Riccardi, Giovanna
Buroni, Silvia
Cardona, Silvia T.
author_facet Hogan, Andrew M.
Scoffone, Viola C.
Makarov, Vadim
Gislason, April S.
Tesfu, Haben
Stietz, Maria S.
Brassinga, Ann Karen C.
Domaratzki, Michael
Li, Xuan
Azzalin, Alberto
Biggiogera, Marco
Riabova, Olga
Monakhova, Natalia
Chiarelli, Laurent R.
Riccardi, Giovanna
Buroni, Silvia
Cardona, Silvia T.
author_sort Hogan, Andrew M.
collection PubMed
description To streamline the elucidation of antibacterial compounds’ mechanism of action, comprehensive high-throughput assays interrogating multiple putative targets are necessary. However, current chemogenomic approaches for antibiotic target identification have not fully utilized the multiplexing potential of next-generation sequencing. Here, we used Illumina sequencing of transposon insertions to track the competitive fitness of a Burkholderia cenocepacia library containing essential gene knockdowns. Using this method, we characterized a novel benzothiadiazole derivative, 10126109 (C109), with antibacterial activity against B. cenocepacia, for which whole-genome sequencing of low-frequency spontaneous drug-resistant mutants had failed to identify the drug target. By combining the identification of hypersusceptible mutants and morphology screening, we show that C109 targets cell division. Furthermore, fluorescence microscopy of bacteria harboring green fluorescent protein (GFP) cell division protein fusions revealed that C109 prevents divisome formation by altering the localization of the essential cell division protein FtsZ. In agreement with this, C109 inhibited both the GTPase and polymerization activities of purified B. cenocepacia FtsZ. C109 displayed antibacterial activity against Gram-positive and Gram-negative cystic fibrosis pathogens, including Mycobacterium abscessus. C109 effectively cleared B. cenocepacia infection in the Caenorhabditis elegans model and exhibited additive interactions with clinically relevant antibiotics. Hence, C109 is an enticing candidate for further drug development.
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spelling pubmed-62567562018-12-10 Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ Hogan, Andrew M. Scoffone, Viola C. Makarov, Vadim Gislason, April S. Tesfu, Haben Stietz, Maria S. Brassinga, Ann Karen C. Domaratzki, Michael Li, Xuan Azzalin, Alberto Biggiogera, Marco Riabova, Olga Monakhova, Natalia Chiarelli, Laurent R. Riccardi, Giovanna Buroni, Silvia Cardona, Silvia T. Antimicrob Agents Chemother Mechanisms of Action: Physiological Effects To streamline the elucidation of antibacterial compounds’ mechanism of action, comprehensive high-throughput assays interrogating multiple putative targets are necessary. However, current chemogenomic approaches for antibiotic target identification have not fully utilized the multiplexing potential of next-generation sequencing. Here, we used Illumina sequencing of transposon insertions to track the competitive fitness of a Burkholderia cenocepacia library containing essential gene knockdowns. Using this method, we characterized a novel benzothiadiazole derivative, 10126109 (C109), with antibacterial activity against B. cenocepacia, for which whole-genome sequencing of low-frequency spontaneous drug-resistant mutants had failed to identify the drug target. By combining the identification of hypersusceptible mutants and morphology screening, we show that C109 targets cell division. Furthermore, fluorescence microscopy of bacteria harboring green fluorescent protein (GFP) cell division protein fusions revealed that C109 prevents divisome formation by altering the localization of the essential cell division protein FtsZ. In agreement with this, C109 inhibited both the GTPase and polymerization activities of purified B. cenocepacia FtsZ. C109 displayed antibacterial activity against Gram-positive and Gram-negative cystic fibrosis pathogens, including Mycobacterium abscessus. C109 effectively cleared B. cenocepacia infection in the Caenorhabditis elegans model and exhibited additive interactions with clinically relevant antibiotics. Hence, C109 is an enticing candidate for further drug development. American Society for Microbiology 2018-11-26 /pmc/articles/PMC6256756/ /pubmed/30297366 http://dx.doi.org/10.1128/AAC.01231-18 Text en Copyright © 2018 Hogan et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Mechanisms of Action: Physiological Effects
Hogan, Andrew M.
Scoffone, Viola C.
Makarov, Vadim
Gislason, April S.
Tesfu, Haben
Stietz, Maria S.
Brassinga, Ann Karen C.
Domaratzki, Michael
Li, Xuan
Azzalin, Alberto
Biggiogera, Marco
Riabova, Olga
Monakhova, Natalia
Chiarelli, Laurent R.
Riccardi, Giovanna
Buroni, Silvia
Cardona, Silvia T.
Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title_full Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title_fullStr Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title_full_unstemmed Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title_short Competitive Fitness of Essential Gene Knockdowns Reveals a Broad-Spectrum Antibacterial Inhibitor of the Cell Division Protein FtsZ
title_sort competitive fitness of essential gene knockdowns reveals a broad-spectrum antibacterial inhibitor of the cell division protein ftsz
topic Mechanisms of Action: Physiological Effects
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6256756/
https://www.ncbi.nlm.nih.gov/pubmed/30297366
http://dx.doi.org/10.1128/AAC.01231-18
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