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Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis

Once translocated into the cytosol of target cells, the catalytic domain (AC) of the adenylate cyclase toxin (CyaA), a major virulence factor of Bordetella pertussis, is potently activated by binding calmodulin (CaM) to produce supraphysiological levels of cAMP, inducing cell death. Using a combinat...

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Autores principales: O’Brien, Darragh P., Durand, Dominique, Voegele, Alexis, Hourdel, Véronique, Davi, Marilyne, Chamot-Rooke, Julia, Vachette, Patrice, Brier, Sébastien, Ladant, Daniel, Chenal, Alexandre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764468/
https://www.ncbi.nlm.nih.gov/pubmed/29287065
http://dx.doi.org/10.1371/journal.pbio.2004486
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author O’Brien, Darragh P.
Durand, Dominique
Voegele, Alexis
Hourdel, Véronique
Davi, Marilyne
Chamot-Rooke, Julia
Vachette, Patrice
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
author_facet O’Brien, Darragh P.
Durand, Dominique
Voegele, Alexis
Hourdel, Véronique
Davi, Marilyne
Chamot-Rooke, Julia
Vachette, Patrice
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
author_sort O’Brien, Darragh P.
collection PubMed
description Once translocated into the cytosol of target cells, the catalytic domain (AC) of the adenylate cyclase toxin (CyaA), a major virulence factor of Bordetella pertussis, is potently activated by binding calmodulin (CaM) to produce supraphysiological levels of cAMP, inducing cell death. Using a combination of small-angle X-ray scattering (SAXS), hydrogen/deuterium exchange mass spectrometry (HDX-MS), and synchrotron radiation circular dichroism (SR-CD), we show that, in the absence of CaM, AC exhibits significant structural disorder, and a 75-residue-long stretch within AC undergoes a disorder-to-order transition upon CaM binding. Beyond this local folding, CaM binding induces long-range allosteric effects that stabilize the distant catalytic site, whilst preserving catalytic loop flexibility. We propose that the high enzymatic activity of AC is due to a tight balance between the CaM-induced decrease of structural flexibility around the catalytic site and the preservation of catalytic loop flexibility, allowing for fast substrate binding and product release. The CaM-induced dampening of AC conformational disorder is likely relevant to other CaM-activated enzymes.
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spelling pubmed-57644682018-01-26 Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis O’Brien, Darragh P. Durand, Dominique Voegele, Alexis Hourdel, Véronique Davi, Marilyne Chamot-Rooke, Julia Vachette, Patrice Brier, Sébastien Ladant, Daniel Chenal, Alexandre PLoS Biol Research Article Once translocated into the cytosol of target cells, the catalytic domain (AC) of the adenylate cyclase toxin (CyaA), a major virulence factor of Bordetella pertussis, is potently activated by binding calmodulin (CaM) to produce supraphysiological levels of cAMP, inducing cell death. Using a combination of small-angle X-ray scattering (SAXS), hydrogen/deuterium exchange mass spectrometry (HDX-MS), and synchrotron radiation circular dichroism (SR-CD), we show that, in the absence of CaM, AC exhibits significant structural disorder, and a 75-residue-long stretch within AC undergoes a disorder-to-order transition upon CaM binding. Beyond this local folding, CaM binding induces long-range allosteric effects that stabilize the distant catalytic site, whilst preserving catalytic loop flexibility. We propose that the high enzymatic activity of AC is due to a tight balance between the CaM-induced decrease of structural flexibility around the catalytic site and the preservation of catalytic loop flexibility, allowing for fast substrate binding and product release. The CaM-induced dampening of AC conformational disorder is likely relevant to other CaM-activated enzymes. Public Library of Science 2017-12-29 /pmc/articles/PMC5764468/ /pubmed/29287065 http://dx.doi.org/10.1371/journal.pbio.2004486 Text en © 2017 O’Brien 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
O’Brien, Darragh P.
Durand, Dominique
Voegele, Alexis
Hourdel, Véronique
Davi, Marilyne
Chamot-Rooke, Julia
Vachette, Patrice
Brier, Sébastien
Ladant, Daniel
Chenal, Alexandre
Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title_full Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title_fullStr Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title_full_unstemmed Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title_short Calmodulin fishing with a structurally disordered bait triggers CyaA catalysis
title_sort calmodulin fishing with a structurally disordered bait triggers cyaa catalysis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764468/
https://www.ncbi.nlm.nih.gov/pubmed/29287065
http://dx.doi.org/10.1371/journal.pbio.2004486
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