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A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells

The molecular mechanisms and forces involved in the translocation of bacterial toxins into host cells are still a matter of intense research. The adenylate cyclase (CyaA) toxin from Bordetella pertussis displays a unique intoxication pathway in which its catalytic domain is directly translocated acr...

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Autores principales: Voegele, Alexis, Sadi, Mirko, O'Brien, Darragh Patrick, Gehan, Pauline, Raoux‐Barbot, Dorothée, Davi, Maryline, Hoos, Sylviane, Brûlé, Sébastien, Raynal, Bertrand, Weber, Patrick, Mechaly, Ariel, Haouz, Ahmed, Rodriguez, Nicolas, Vachette, Patrice, Durand, Dominique, Brier, Sébastien, Ladant, Daniel, Chenal, Alexandre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097335/
https://www.ncbi.nlm.nih.gov/pubmed/33977052
http://dx.doi.org/10.1002/advs.202003630
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author Voegele, Alexis
Sadi, Mirko
O'Brien, Darragh Patrick
Gehan, Pauline
Raoux‐Barbot, Dorothée
Davi, Maryline
Hoos, Sylviane
Brûlé, Sébastien
Raynal, Bertrand
Weber, Patrick
Mechaly, Ariel
Haouz, Ahmed
Rodriguez, Nicolas
Vachette, Patrice
Durand, Dominique
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
author_facet Voegele, Alexis
Sadi, Mirko
O'Brien, Darragh Patrick
Gehan, Pauline
Raoux‐Barbot, Dorothée
Davi, Maryline
Hoos, Sylviane
Brûlé, Sébastien
Raynal, Bertrand
Weber, Patrick
Mechaly, Ariel
Haouz, Ahmed
Rodriguez, Nicolas
Vachette, Patrice
Durand, Dominique
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
author_sort Voegele, Alexis
collection PubMed
description The molecular mechanisms and forces involved in the translocation of bacterial toxins into host cells are still a matter of intense research. The adenylate cyclase (CyaA) toxin from Bordetella pertussis displays a unique intoxication pathway in which its catalytic domain is directly translocated across target cell membranes. The CyaA translocation region contains a segment, P454 (residues 454–484), which exhibits membrane‐active properties related to antimicrobial peptides. Herein, the results show that this peptide is able to translocate across membranes and to interact with calmodulin (CaM). Structural and biophysical analyses reveal the key residues of P454 involved in membrane destabilization and calmodulin binding. Mutational analysis demonstrates that these residues play a crucial role in CyaA translocation into target cells. In addition, calmidazolium, a calmodulin inhibitor, efficiently blocks CyaA internalization. It is proposed that after CyaA binding to target cells, the P454 segment destabilizes the plasma membrane, translocates across the lipid bilayer and binds calmodulin. Trapping of CyaA by the CaM:P454 interaction in the cytosol may assist the entry of the N‐terminal catalytic domain by converting the stochastic motion of the polypeptide chain through the membrane into an efficient vectorial chain translocation into host cells.
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spelling pubmed-80973352021-05-10 A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells Voegele, Alexis Sadi, Mirko O'Brien, Darragh Patrick Gehan, Pauline Raoux‐Barbot, Dorothée Davi, Maryline Hoos, Sylviane Brûlé, Sébastien Raynal, Bertrand Weber, Patrick Mechaly, Ariel Haouz, Ahmed Rodriguez, Nicolas Vachette, Patrice Durand, Dominique Brier, Sébastien Ladant, Daniel Chenal, Alexandre Adv Sci (Weinh) Full Papers The molecular mechanisms and forces involved in the translocation of bacterial toxins into host cells are still a matter of intense research. The adenylate cyclase (CyaA) toxin from Bordetella pertussis displays a unique intoxication pathway in which its catalytic domain is directly translocated across target cell membranes. The CyaA translocation region contains a segment, P454 (residues 454–484), which exhibits membrane‐active properties related to antimicrobial peptides. Herein, the results show that this peptide is able to translocate across membranes and to interact with calmodulin (CaM). Structural and biophysical analyses reveal the key residues of P454 involved in membrane destabilization and calmodulin binding. Mutational analysis demonstrates that these residues play a crucial role in CyaA translocation into target cells. In addition, calmidazolium, a calmodulin inhibitor, efficiently blocks CyaA internalization. It is proposed that after CyaA binding to target cells, the P454 segment destabilizes the plasma membrane, translocates across the lipid bilayer and binds calmodulin. Trapping of CyaA by the CaM:P454 interaction in the cytosol may assist the entry of the N‐terminal catalytic domain by converting the stochastic motion of the polypeptide chain through the membrane into an efficient vectorial chain translocation into host cells. John Wiley and Sons Inc. 2021-03-08 /pmc/articles/PMC8097335/ /pubmed/33977052 http://dx.doi.org/10.1002/advs.202003630 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Voegele, Alexis
Sadi, Mirko
O'Brien, Darragh Patrick
Gehan, Pauline
Raoux‐Barbot, Dorothée
Davi, Maryline
Hoos, Sylviane
Brûlé, Sébastien
Raynal, Bertrand
Weber, Patrick
Mechaly, Ariel
Haouz, Ahmed
Rodriguez, Nicolas
Vachette, Patrice
Durand, Dominique
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title_full A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title_fullStr A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title_full_unstemmed A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title_short A High‐Affinity Calmodulin‐Binding Site in the CyaA Toxin Translocation Domain is Essential for Invasion of Eukaryotic Cells
title_sort high‐affinity calmodulin‐binding site in the cyaa toxin translocation domain is essential for invasion of eukaryotic cells
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097335/
https://www.ncbi.nlm.nih.gov/pubmed/33977052
http://dx.doi.org/10.1002/advs.202003630
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