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Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes

Type IV secretion systems are protein secretion machineries that are frequently used by pathogenic bacteria to inject their virulence factors into target cells of their respective hosts. In the case of the human gastric pathogen Helicobacter pylori, the cytotoxin-associated gene (Cag) type IV secret...

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Autores principales: Lettl, Clara, Schindele, Franziska, Testolin, Giambattista, Bär, Alexander, Rehm, Tobias, Brönstrup, Mark, Schobert, Rainer, Bilitewski, Ursula, Haas, Rainer, Fischer, Wolfgang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7775389/
https://www.ncbi.nlm.nih.gov/pubmed/33392108
http://dx.doi.org/10.3389/fcimb.2020.602958
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author Lettl, Clara
Schindele, Franziska
Testolin, Giambattista
Bär, Alexander
Rehm, Tobias
Brönstrup, Mark
Schobert, Rainer
Bilitewski, Ursula
Haas, Rainer
Fischer, Wolfgang
author_facet Lettl, Clara
Schindele, Franziska
Testolin, Giambattista
Bär, Alexander
Rehm, Tobias
Brönstrup, Mark
Schobert, Rainer
Bilitewski, Ursula
Haas, Rainer
Fischer, Wolfgang
author_sort Lettl, Clara
collection PubMed
description Type IV secretion systems are protein secretion machineries that are frequently used by pathogenic bacteria to inject their virulence factors into target cells of their respective hosts. In the case of the human gastric pathogen Helicobacter pylori, the cytotoxin-associated gene (Cag) type IV secretion system is considered a major cause for severe disease, such as gastric cancer, and thus constitutes an attractive target for specific treatment options against H. pylori infections. Here, we have used a Cag type IV secretion reporter assay for screening a repurposing compound library for inhibitors targeting this system. We found that the antitumor agent cisplatin, a platinum coordination complex that kills target cells by formation of DNA crosslinks, is a potent inhibitor of the Cag type IV secretion system. Strikingly, we found that this inhibitory activity of cisplatin depends on a ligand exchange reaction which incorporates a solvent molecule (dimethylsulfoxide) into the complex, a modification which is known to be deleterious for DNA crosslinking, and for its anticancer activity. We extended our analysis to several analogous platinum complexes containing N-heterocyclic carbene, as well as DMSO or other ligands, and found varying inhibitory activities toward the Cag system which were not congruent with their DNA-binding properties, suggesting that protein interactions may cause the inhibitory effect. Inhibition experiments under varying conditions revealed effects on adherence and bacterial viability as well, and showed that the type IV secretion-inhibitory capacity of platinum complexes can be inactivated by sulfur-containing reagents and in complex bacterial growth media. Taken together, our results demonstrate DNA binding-independent inhibitory effects of cisplatin and other platinum complexes against different H. pylori processes including type IV secretion.
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spelling pubmed-77753892021-01-02 Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes Lettl, Clara Schindele, Franziska Testolin, Giambattista Bär, Alexander Rehm, Tobias Brönstrup, Mark Schobert, Rainer Bilitewski, Ursula Haas, Rainer Fischer, Wolfgang Front Cell Infect Microbiol Cellular and Infection Microbiology Type IV secretion systems are protein secretion machineries that are frequently used by pathogenic bacteria to inject their virulence factors into target cells of their respective hosts. In the case of the human gastric pathogen Helicobacter pylori, the cytotoxin-associated gene (Cag) type IV secretion system is considered a major cause for severe disease, such as gastric cancer, and thus constitutes an attractive target for specific treatment options against H. pylori infections. Here, we have used a Cag type IV secretion reporter assay for screening a repurposing compound library for inhibitors targeting this system. We found that the antitumor agent cisplatin, a platinum coordination complex that kills target cells by formation of DNA crosslinks, is a potent inhibitor of the Cag type IV secretion system. Strikingly, we found that this inhibitory activity of cisplatin depends on a ligand exchange reaction which incorporates a solvent molecule (dimethylsulfoxide) into the complex, a modification which is known to be deleterious for DNA crosslinking, and for its anticancer activity. We extended our analysis to several analogous platinum complexes containing N-heterocyclic carbene, as well as DMSO or other ligands, and found varying inhibitory activities toward the Cag system which were not congruent with their DNA-binding properties, suggesting that protein interactions may cause the inhibitory effect. Inhibition experiments under varying conditions revealed effects on adherence and bacterial viability as well, and showed that the type IV secretion-inhibitory capacity of platinum complexes can be inactivated by sulfur-containing reagents and in complex bacterial growth media. Taken together, our results demonstrate DNA binding-independent inhibitory effects of cisplatin and other platinum complexes against different H. pylori processes including type IV secretion. Frontiers Media S.A. 2020-12-18 /pmc/articles/PMC7775389/ /pubmed/33392108 http://dx.doi.org/10.3389/fcimb.2020.602958 Text en Copyright © 2020 Lettl, Schindele, Testolin, Bär, Rehm, Brönstrup, Schobert, Bilitewski, Haas and Fischer http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Lettl, Clara
Schindele, Franziska
Testolin, Giambattista
Bär, Alexander
Rehm, Tobias
Brönstrup, Mark
Schobert, Rainer
Bilitewski, Ursula
Haas, Rainer
Fischer, Wolfgang
Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title_full Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title_fullStr Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title_full_unstemmed Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title_short Inhibition of Type IV Secretion Activity and Growth of Helicobacter pylori by Cisplatin and Other Platinum Complexes
title_sort inhibition of type iv secretion activity and growth of helicobacter pylori by cisplatin and other platinum complexes
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7775389/
https://www.ncbi.nlm.nih.gov/pubmed/33392108
http://dx.doi.org/10.3389/fcimb.2020.602958
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