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Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin

The Bordetella pertussis toxin (PT) is one important virulence factor causing the severe childhood disease whooping cough which still accounted for approximately 63,000 deaths worldwide in children in 2013. PT consists of PTS1, the enzymatically active (A) subunit and a non-covalently linked pentame...

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Autores principales: Ernst, Katharina, Eberhardt, Nina, Mittler, Ann-Katrin, Sonnabend, Michael, Anastasia, Anna, Freisinger, Simon, Schiene-Fischer, Cordelia, Malešević, Miroslav, Barth, Holger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983237/
https://www.ncbi.nlm.nih.gov/pubmed/29723951
http://dx.doi.org/10.3390/toxins10050181
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author Ernst, Katharina
Eberhardt, Nina
Mittler, Ann-Katrin
Sonnabend, Michael
Anastasia, Anna
Freisinger, Simon
Schiene-Fischer, Cordelia
Malešević, Miroslav
Barth, Holger
author_facet Ernst, Katharina
Eberhardt, Nina
Mittler, Ann-Katrin
Sonnabend, Michael
Anastasia, Anna
Freisinger, Simon
Schiene-Fischer, Cordelia
Malešević, Miroslav
Barth, Holger
author_sort Ernst, Katharina
collection PubMed
description The Bordetella pertussis toxin (PT) is one important virulence factor causing the severe childhood disease whooping cough which still accounted for approximately 63,000 deaths worldwide in children in 2013. PT consists of PTS1, the enzymatically active (A) subunit and a non-covalently linked pentameric binding/transport (B) subunit. After endocytosis, PT takes a retrograde route to the endoplasmic reticulum (ER), where PTS1 is released into the cytosol. In the cytosol, PTS1 ADP-ribosylates inhibitory alpha subunits of trimeric GTP-binding proteins (Giα) leading to increased cAMP levels and disturbed signalling. Here, we show that the cyclophilin (Cyp) isoforms CypA and Cyp40 directly interact with PTS1 in vitro and that Cyp inhibitors cyclosporine A (CsA) and its tailored non-immunosuppressive derivative VK112 both inhibit intoxication of CHO-K1 cells with PT, as analysed in a morphology-based assay. Moreover, in cells treated with PT in the presence of CsA, the amount of ADP-ribosylated Giα was significantly reduced and less PTS1 was detected in the cytosol compared to cells treated with PT only. The results suggest that the uptake of PTS1 into the cytosol requires Cyps. Therefore, CsA/VK112 represent promising candidates for novel therapeutic strategies acting on the toxin level to prevent the severe, life-threatening symptoms caused by PT.
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spelling pubmed-59832372018-06-06 Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin Ernst, Katharina Eberhardt, Nina Mittler, Ann-Katrin Sonnabend, Michael Anastasia, Anna Freisinger, Simon Schiene-Fischer, Cordelia Malešević, Miroslav Barth, Holger Toxins (Basel) Article The Bordetella pertussis toxin (PT) is one important virulence factor causing the severe childhood disease whooping cough which still accounted for approximately 63,000 deaths worldwide in children in 2013. PT consists of PTS1, the enzymatically active (A) subunit and a non-covalently linked pentameric binding/transport (B) subunit. After endocytosis, PT takes a retrograde route to the endoplasmic reticulum (ER), where PTS1 is released into the cytosol. In the cytosol, PTS1 ADP-ribosylates inhibitory alpha subunits of trimeric GTP-binding proteins (Giα) leading to increased cAMP levels and disturbed signalling. Here, we show that the cyclophilin (Cyp) isoforms CypA and Cyp40 directly interact with PTS1 in vitro and that Cyp inhibitors cyclosporine A (CsA) and its tailored non-immunosuppressive derivative VK112 both inhibit intoxication of CHO-K1 cells with PT, as analysed in a morphology-based assay. Moreover, in cells treated with PT in the presence of CsA, the amount of ADP-ribosylated Giα was significantly reduced and less PTS1 was detected in the cytosol compared to cells treated with PT only. The results suggest that the uptake of PTS1 into the cytosol requires Cyps. Therefore, CsA/VK112 represent promising candidates for novel therapeutic strategies acting on the toxin level to prevent the severe, life-threatening symptoms caused by PT. MDPI 2018-05-01 /pmc/articles/PMC5983237/ /pubmed/29723951 http://dx.doi.org/10.3390/toxins10050181 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ernst, Katharina
Eberhardt, Nina
Mittler, Ann-Katrin
Sonnabend, Michael
Anastasia, Anna
Freisinger, Simon
Schiene-Fischer, Cordelia
Malešević, Miroslav
Barth, Holger
Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title_full Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title_fullStr Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title_full_unstemmed Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title_short Pharmacological Cyclophilin Inhibitors Prevent Intoxication of Mammalian Cells with Bordetella pertussis Toxin
title_sort pharmacological cyclophilin inhibitors prevent intoxication of mammalian cells with bordetella pertussis toxin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5983237/
https://www.ncbi.nlm.nih.gov/pubmed/29723951
http://dx.doi.org/10.3390/toxins10050181
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