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Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore

Ionophores are small molecules or peptides that transport metal ions across biological membranes. Their transport capabilities are typically characterized in vitro using vesicles and single ion species. It is difficult to infer from these data which effects ionophores have on living cells in a compl...

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Autores principales: Senges, Christoph H. R., Warmuth, Helen L., Vázquez-Hernández, Melissa, Uzun, Huriye Deniz, Sagurna, Leonie, Dietze, Pascal, Schmidt, Claudia, Mücher, Brix, Herlitze, Stefan, Krämer, Ute, Ott, Ingo, Pomorski, Thomas Günther, Bandow, Julia E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140759/
https://www.ncbi.nlm.nih.gov/pubmed/35666003
http://dx.doi.org/10.1002/pmic.202200061
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author Senges, Christoph H. R.
Warmuth, Helen L.
Vázquez-Hernández, Melissa
Uzun, Huriye Deniz
Sagurna, Leonie
Dietze, Pascal
Schmidt, Claudia
Mücher, Brix
Herlitze, Stefan
Krämer, Ute
Ott, Ingo
Pomorski, Thomas Günther
Bandow, Julia E.
author_facet Senges, Christoph H. R.
Warmuth, Helen L.
Vázquez-Hernández, Melissa
Uzun, Huriye Deniz
Sagurna, Leonie
Dietze, Pascal
Schmidt, Claudia
Mücher, Brix
Herlitze, Stefan
Krämer, Ute
Ott, Ingo
Pomorski, Thomas Günther
Bandow, Julia E.
author_sort Senges, Christoph H. R.
collection PubMed
description Ionophores are small molecules or peptides that transport metal ions across biological membranes. Their transport capabilities are typically characterized in vitro using vesicles and single ion species. It is difficult to infer from these data which effects ionophores have on living cells in a complex environment (e.g., culture medium), since net ion movement is influenced by many factors including ion composition of the medium, concentration gradients, pH gradient, and protein-mediated transport processes across the membrane. To gain insights into the antibacterial mechanism of action of the semisynthetic polyether ionophore 4-Br-A23187, known to efficiently transport zinc and manganese in vitro, we investigated its effects on the gram-positive model organism Bacillus subtilis. In addition to monitoring cellular ion concentrations, the physiological impact of treatment was assessed on the proteome level. 4-Br-A23187 treatment resulted in an increase in intracellular copper levels, the extent of which depended on the copper concentration of the medium. Effects of copper accumulation mirrored by the proteomic response included oxidative stress, disturbance of proteostasis, metal and sulfur homeostasis. The antibiotic effect of 4-Br-A23187 is further aggravated by a decrease in intracellular manganese and magnesium. A liposome model confirmed that 4-Br-A23187 acts as copper ionophore in vitro.
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spelling pubmed-101407592023-04-28 Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore Senges, Christoph H. R. Warmuth, Helen L. Vázquez-Hernández, Melissa Uzun, Huriye Deniz Sagurna, Leonie Dietze, Pascal Schmidt, Claudia Mücher, Brix Herlitze, Stefan Krämer, Ute Ott, Ingo Pomorski, Thomas Günther Bandow, Julia E. Proteomics Article Ionophores are small molecules or peptides that transport metal ions across biological membranes. Their transport capabilities are typically characterized in vitro using vesicles and single ion species. It is difficult to infer from these data which effects ionophores have on living cells in a complex environment (e.g., culture medium), since net ion movement is influenced by many factors including ion composition of the medium, concentration gradients, pH gradient, and protein-mediated transport processes across the membrane. To gain insights into the antibacterial mechanism of action of the semisynthetic polyether ionophore 4-Br-A23187, known to efficiently transport zinc and manganese in vitro, we investigated its effects on the gram-positive model organism Bacillus subtilis. In addition to monitoring cellular ion concentrations, the physiological impact of treatment was assessed on the proteome level. 4-Br-A23187 treatment resulted in an increase in intracellular copper levels, the extent of which depended on the copper concentration of the medium. Effects of copper accumulation mirrored by the proteomic response included oxidative stress, disturbance of proteostasis, metal and sulfur homeostasis. The antibiotic effect of 4-Br-A23187 is further aggravated by a decrease in intracellular manganese and magnesium. A liposome model confirmed that 4-Br-A23187 acts as copper ionophore in vitro. 2022-09 2022-06-27 /pmc/articles/PMC10140759/ /pubmed/35666003 http://dx.doi.org/10.1002/pmic.202200061 Text en https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Article
Senges, Christoph H. R.
Warmuth, Helen L.
Vázquez-Hernández, Melissa
Uzun, Huriye Deniz
Sagurna, Leonie
Dietze, Pascal
Schmidt, Claudia
Mücher, Brix
Herlitze, Stefan
Krämer, Ute
Ott, Ingo
Pomorski, Thomas Günther
Bandow, Julia E.
Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title_full Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title_fullStr Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title_full_unstemmed Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title_short Effects of 4-Br-A23187 on Bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
title_sort effects of 4-br-a23187 on bacillus subtilis cells and unilamellar vesicles reveal it to be a potent copper ionophore
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10140759/
https://www.ncbi.nlm.nih.gov/pubmed/35666003
http://dx.doi.org/10.1002/pmic.202200061
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