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Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport

Various bacterial toxins circumvent host defenses through overproduction of cAMP. In a previous study, we showed that edema factor (EF), an adenylate cyclase from Bacillus anthracis, disrupts endocytic recycling mediated by the small GTPase Rab11. As a result, cargo proteins such as cadherins fail t...

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Autores principales: Guichard, Annabel, Jain, Prashant, Moayeri, Mahtab, Schwartz, Ruth, Chin, Stephen, Zhu, Lin, Cruz-Moreno, Beatriz, Liu, Janet Z., Aguilar, Bernice, Hollands, Andrew, Leppla, Stephen H., Nizet, Victor, Bier, Ethan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5612732/
https://www.ncbi.nlm.nih.gov/pubmed/28945820
http://dx.doi.org/10.1371/journal.ppat.1006603
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author Guichard, Annabel
Jain, Prashant
Moayeri, Mahtab
Schwartz, Ruth
Chin, Stephen
Zhu, Lin
Cruz-Moreno, Beatriz
Liu, Janet Z.
Aguilar, Bernice
Hollands, Andrew
Leppla, Stephen H.
Nizet, Victor
Bier, Ethan
author_facet Guichard, Annabel
Jain, Prashant
Moayeri, Mahtab
Schwartz, Ruth
Chin, Stephen
Zhu, Lin
Cruz-Moreno, Beatriz
Liu, Janet Z.
Aguilar, Bernice
Hollands, Andrew
Leppla, Stephen H.
Nizet, Victor
Bier, Ethan
author_sort Guichard, Annabel
collection PubMed
description Various bacterial toxins circumvent host defenses through overproduction of cAMP. In a previous study, we showed that edema factor (EF), an adenylate cyclase from Bacillus anthracis, disrupts endocytic recycling mediated by the small GTPase Rab11. As a result, cargo proteins such as cadherins fail to reach inter-cellular junctions. In the present study, we provide further mechanistic dissection of Rab11 inhibition by EF using a combination of Drosophila and mammalian systems. EF blocks Rab11 trafficking after the GTP-loading step, preventing a constitutively active form of Rab11 from delivering cargo vesicles to the plasma membrane. Both of the primary cAMP effector pathways -PKA and Epac/Rap1- contribute to inhibition of Rab11-mediated trafficking, but act at distinct steps of the delivery process. PKA acts early, preventing Rab11 from associating with its effectors Rip11 and Sec15. In contrast, Epac functions subsequently via the small GTPase Rap1 to block fusion of recycling endosomes with the plasma membrane, and appears to be the primary effector of EF toxicity in this process. Similarly, experiments conducted in mammalian systems reveal that Epac, but not PKA, mediates the activity of EF both in cell culture and in vivo. The small GTPase Arf6, which initiates endocytic retrieval of cell adhesion components, also contributes to junctional homeostasis by counteracting Rab11-dependent delivery of cargo proteins at sites of cell-cell contact. These studies have potentially significant practical implications, since chemical inhibition of either Arf6 or Epac blocks the effect of EF in cell culture and in vivo, opening new potential therapeutic avenues for treating symptoms caused by cAMP-inducing toxins or related barrier-disrupting pathologies.
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spelling pubmed-56127322017-10-09 Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport Guichard, Annabel Jain, Prashant Moayeri, Mahtab Schwartz, Ruth Chin, Stephen Zhu, Lin Cruz-Moreno, Beatriz Liu, Janet Z. Aguilar, Bernice Hollands, Andrew Leppla, Stephen H. Nizet, Victor Bier, Ethan PLoS Pathog Research Article Various bacterial toxins circumvent host defenses through overproduction of cAMP. In a previous study, we showed that edema factor (EF), an adenylate cyclase from Bacillus anthracis, disrupts endocytic recycling mediated by the small GTPase Rab11. As a result, cargo proteins such as cadherins fail to reach inter-cellular junctions. In the present study, we provide further mechanistic dissection of Rab11 inhibition by EF using a combination of Drosophila and mammalian systems. EF blocks Rab11 trafficking after the GTP-loading step, preventing a constitutively active form of Rab11 from delivering cargo vesicles to the plasma membrane. Both of the primary cAMP effector pathways -PKA and Epac/Rap1- contribute to inhibition of Rab11-mediated trafficking, but act at distinct steps of the delivery process. PKA acts early, preventing Rab11 from associating with its effectors Rip11 and Sec15. In contrast, Epac functions subsequently via the small GTPase Rap1 to block fusion of recycling endosomes with the plasma membrane, and appears to be the primary effector of EF toxicity in this process. Similarly, experiments conducted in mammalian systems reveal that Epac, but not PKA, mediates the activity of EF both in cell culture and in vivo. The small GTPase Arf6, which initiates endocytic retrieval of cell adhesion components, also contributes to junctional homeostasis by counteracting Rab11-dependent delivery of cargo proteins at sites of cell-cell contact. These studies have potentially significant practical implications, since chemical inhibition of either Arf6 or Epac blocks the effect of EF in cell culture and in vivo, opening new potential therapeutic avenues for treating symptoms caused by cAMP-inducing toxins or related barrier-disrupting pathologies. Public Library of Science 2017-09-25 /pmc/articles/PMC5612732/ /pubmed/28945820 http://dx.doi.org/10.1371/journal.ppat.1006603 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Guichard, Annabel
Jain, Prashant
Moayeri, Mahtab
Schwartz, Ruth
Chin, Stephen
Zhu, Lin
Cruz-Moreno, Beatriz
Liu, Janet Z.
Aguilar, Bernice
Hollands, Andrew
Leppla, Stephen H.
Nizet, Victor
Bier, Ethan
Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title_full Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title_fullStr Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title_full_unstemmed Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title_short Anthrax edema toxin disrupts distinct steps in Rab11-dependent junctional transport
title_sort anthrax edema toxin disrupts distinct steps in rab11-dependent junctional transport
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5612732/
https://www.ncbi.nlm.nih.gov/pubmed/28945820
http://dx.doi.org/10.1371/journal.ppat.1006603
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