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Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores

Bordetella adenylate cyclase toxin-hemolysin (CyaA) penetrates the cytoplasmic membrane of phagocytes and employs two distinct conformers to exert its multiple activities. One conformer forms cation-selective pores that permeabilize phagocyte membrane for efflux of cytosolic potassium. The other con...

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Autores principales: Fiser, Radovan, Masin, Jiri, Bumba, Ladislav, Pospisilova, Eva, Fayolle, Catherine, Basler, Marek, Sadilkova, Lenka, Adkins, Irena, Kamanova, Jana, Cerny, Jan, Konopasek, Ivo, Osicka, Radim, Leclerc, Claude, Sebo, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3320606/
https://www.ncbi.nlm.nih.gov/pubmed/22496638
http://dx.doi.org/10.1371/journal.ppat.1002580
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author Fiser, Radovan
Masin, Jiri
Bumba, Ladislav
Pospisilova, Eva
Fayolle, Catherine
Basler, Marek
Sadilkova, Lenka
Adkins, Irena
Kamanova, Jana
Cerny, Jan
Konopasek, Ivo
Osicka, Radim
Leclerc, Claude
Sebo, Peter
author_facet Fiser, Radovan
Masin, Jiri
Bumba, Ladislav
Pospisilova, Eva
Fayolle, Catherine
Basler, Marek
Sadilkova, Lenka
Adkins, Irena
Kamanova, Jana
Cerny, Jan
Konopasek, Ivo
Osicka, Radim
Leclerc, Claude
Sebo, Peter
author_sort Fiser, Radovan
collection PubMed
description Bordetella adenylate cyclase toxin-hemolysin (CyaA) penetrates the cytoplasmic membrane of phagocytes and employs two distinct conformers to exert its multiple activities. One conformer forms cation-selective pores that permeabilize phagocyte membrane for efflux of cytosolic potassium. The other conformer conducts extracellular calcium ions across cytoplasmic membrane of cells, relocates into lipid rafts, translocates the adenylate cyclase enzyme (AC) domain into cells and converts cytosolic ATP to cAMP. We show that the calcium-conducting activity of CyaA controls the path and kinetics of endocytic removal of toxin pores from phagocyte membrane. The enzymatically inactive but calcium-conducting CyaA-AC(−) toxoid was endocytosed via a clathrin-dependent pathway. In contrast, a doubly mutated (E570K+E581P) toxoid, unable to conduct Ca(2+) into cells, was rapidly internalized by membrane macropinocytosis, unless rescued by Ca(2+) influx promoted in trans by ionomycin or intact toxoid. Moreover, a fully pore-forming CyaA-ΔAC hemolysin failed to permeabilize phagocytes, unless endocytic removal of its pores from cell membrane was decelerated through Ca(2+) influx promoted by molecules locked in a Ca(2+)-conducting conformation by the 3D1 antibody. Inhibition of endocytosis also enabled the native B. pertussis-produced CyaA to induce lysis of J774A.1 macrophages at concentrations starting from 100 ng/ml. Hence, by mediating calcium influx into cells, the translocating conformer of CyaA controls the removal of bystander toxin pores from phagocyte membrane. This triggers a positive feedback loop of exacerbated cell permeabilization, where the efflux of cellular potassium yields further decreased toxin pore removal from cell membrane and this further enhances cell permeabilization and potassium efflux.
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spelling pubmed-33206062012-04-11 Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores Fiser, Radovan Masin, Jiri Bumba, Ladislav Pospisilova, Eva Fayolle, Catherine Basler, Marek Sadilkova, Lenka Adkins, Irena Kamanova, Jana Cerny, Jan Konopasek, Ivo Osicka, Radim Leclerc, Claude Sebo, Peter PLoS Pathog Research Article Bordetella adenylate cyclase toxin-hemolysin (CyaA) penetrates the cytoplasmic membrane of phagocytes and employs two distinct conformers to exert its multiple activities. One conformer forms cation-selective pores that permeabilize phagocyte membrane for efflux of cytosolic potassium. The other conformer conducts extracellular calcium ions across cytoplasmic membrane of cells, relocates into lipid rafts, translocates the adenylate cyclase enzyme (AC) domain into cells and converts cytosolic ATP to cAMP. We show that the calcium-conducting activity of CyaA controls the path and kinetics of endocytic removal of toxin pores from phagocyte membrane. The enzymatically inactive but calcium-conducting CyaA-AC(−) toxoid was endocytosed via a clathrin-dependent pathway. In contrast, a doubly mutated (E570K+E581P) toxoid, unable to conduct Ca(2+) into cells, was rapidly internalized by membrane macropinocytosis, unless rescued by Ca(2+) influx promoted in trans by ionomycin or intact toxoid. Moreover, a fully pore-forming CyaA-ΔAC hemolysin failed to permeabilize phagocytes, unless endocytic removal of its pores from cell membrane was decelerated through Ca(2+) influx promoted by molecules locked in a Ca(2+)-conducting conformation by the 3D1 antibody. Inhibition of endocytosis also enabled the native B. pertussis-produced CyaA to induce lysis of J774A.1 macrophages at concentrations starting from 100 ng/ml. Hence, by mediating calcium influx into cells, the translocating conformer of CyaA controls the removal of bystander toxin pores from phagocyte membrane. This triggers a positive feedback loop of exacerbated cell permeabilization, where the efflux of cellular potassium yields further decreased toxin pore removal from cell membrane and this further enhances cell permeabilization and potassium efflux. Public Library of Science 2012-04-05 /pmc/articles/PMC3320606/ /pubmed/22496638 http://dx.doi.org/10.1371/journal.ppat.1002580 Text en Fiser et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fiser, Radovan
Masin, Jiri
Bumba, Ladislav
Pospisilova, Eva
Fayolle, Catherine
Basler, Marek
Sadilkova, Lenka
Adkins, Irena
Kamanova, Jana
Cerny, Jan
Konopasek, Ivo
Osicka, Radim
Leclerc, Claude
Sebo, Peter
Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title_full Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title_fullStr Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title_full_unstemmed Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title_short Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
title_sort calcium influx rescues adenylate cyclase-hemolysin from rapid cell membrane removal and enables phagocyte permeabilization by toxin pores
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3320606/
https://www.ncbi.nlm.nih.gov/pubmed/22496638
http://dx.doi.org/10.1371/journal.ppat.1002580
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