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Tomatidine, a lead antibiotic molecule that targets Staphylococcus aureus ATP synthase subunit C

Maxime Lamontagne Boulet, Charles Isabelle, Isabelle Guay, Eric Brouillette, Jean-Philippe Langlois, Pierre-Étienne Jacques, Sébastien Rodrigue, Ryszard Brzezinski, Pascale B. Beauregard, Kamal Bouarab, Kumaraswamy Boyapelly, Pierre-Luc Boudreault, Éric Marsault, François Malouin
Maxime Lamontagne Boulet
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Charles Isabelle
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Isabelle Guay
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Eric Brouillette
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Jean-Philippe Langlois
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Pierre-Étienne Jacques
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Sébastien Rodrigue
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Ryszard Brzezinski
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Pascale B. Beauregard
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Kamal Bouarab
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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Kumaraswamy Boyapelly
2Département de Pharmacologie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, QC, Canada, J1H 5N4
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Pierre-Luc Boudreault
2Département de Pharmacologie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, QC, Canada, J1H 5N4
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Éric Marsault
2Département de Pharmacologie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, QC, Canada, J1H 5N4
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François Malouin
1Centre d'Étude et de Valorisation de la Diversité Microbienne (CEVDM), Département de biologie, Faculté des sciences, Université de Sherbrooke, Sherbrooke, QC, Canada, J1K 2R1
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  • For correspondence: francois.malouin@usherbrooke.ca
DOI: 10.1128/AAC.02197-17
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ABSTRACT

Methicillin-resistant Staphylococcus aureus (MRSA) is a leading cause of deadly hospital-acquired infections. The discovery of anti-Staphylococcus antibiotics and new classes of drugs not susceptible to the mechanisms of resistance shared among bacteria is imperative. We recently showed that tomatidine (TO), a steroidal alkaloid from solanaceous plants, possesses potent antibacterial activity against S. aureus small colony variants (SCVs), the notoriously persistent form of this bacterium that has been associated with recurrence of infections. Here, using genomic analysis of in vitro-generated TO-resistant S. aureus strains to identify mutations in genes involved in resistance, we identified the bacterial ATP synthase as the cellular target. Sequence alignments were performed to highlight the modified sequences and the structural consequences of the mutations were evaluated in structural models. Overexpression of the atpE gene in S. aureus SCVs or introducing the mutation found in the atpE gene of one of the high-level TO-resistant S. aureus mutant into the Bacillus subtilis atpE gene provided resistance to TO and further validated the identity of the cellular target. FC04-100, a TO derivative which also possesses activity against non-SCV strains, prevents high-level resistance development in prototypic strains and limits the level of resistance observed in SCVs. An ATP synthesis assay allowed the observation of a correlation between antibiotic potency and ATP synthase inhibition. The selectivity index (inhibition of ATP production by mitochondria vs. bacterial ATP synthase) is estimated to be >105-fold for FC04-100.

FOOTNOTES

  • ↵*Corresponding author mailing address: Université de Sherbrooke, Département de Biologie, Faculté des Sciences, 2500 Boul. Université, Sherbrooke, QC, Canada, J1K 2R1. Phone: (819) 821-8000, ext. 61202. Fax: (819) 821-8049. E-mail: francois.malouin{at}usherbrooke.ca
  • Copyright © 2018 American Society for Microbiology.

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Tomatidine, a lead antibiotic molecule that targets Staphylococcus aureus ATP synthase subunit C
Maxime Lamontagne Boulet, Charles Isabelle, Isabelle Guay, Eric Brouillette, Jean-Philippe Langlois, Pierre-Étienne Jacques, Sébastien Rodrigue, Ryszard Brzezinski, Pascale B. Beauregard, Kamal Bouarab, Kumaraswamy Boyapelly, Pierre-Luc Boudreault, Éric Marsault, François Malouin
Antimicrobial Agents and Chemotherapy Apr 2018, AAC.02197-17; DOI: 10.1128/AAC.02197-17

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Tomatidine, a lead antibiotic molecule that targets Staphylococcus aureus ATP synthase subunit C
Maxime Lamontagne Boulet, Charles Isabelle, Isabelle Guay, Eric Brouillette, Jean-Philippe Langlois, Pierre-Étienne Jacques, Sébastien Rodrigue, Ryszard Brzezinski, Pascale B. Beauregard, Kamal Bouarab, Kumaraswamy Boyapelly, Pierre-Luc Boudreault, Éric Marsault, François Malouin
Antimicrobial Agents and Chemotherapy Apr 2018, AAC.02197-17; DOI: 10.1128/AAC.02197-17
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