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Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection

Cyclic paroxysm and high fever are hallmarks of malaria and are associated with high levels of pyrogenic cytokines, including IL-1β. In this report, we describe a signature for the expression of inflammasome-related genes and caspase-1 activation in malaria. Indeed, when we infected mice, Plasmodium...

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Autores principales: Ataide, Marco A., Andrade, Warrison A., Zamboni, Dario S., Wang, Donghai, Souza, Maria do Carmo, Franklin, Bernardo S., Elian, Samir, Martins, Flaviano S., Pereira, Dhelio, Reed, George, Fitzgerald, Katherine A., Golenbock, Douglas T., Gazzinelli, Ricardo T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3894209/
https://www.ncbi.nlm.nih.gov/pubmed/24453977
http://dx.doi.org/10.1371/journal.ppat.1003885
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author Ataide, Marco A.
Andrade, Warrison A.
Zamboni, Dario S.
Wang, Donghai
Souza, Maria do Carmo
Franklin, Bernardo S.
Elian, Samir
Martins, Flaviano S.
Pereira, Dhelio
Reed, George
Fitzgerald, Katherine A.
Golenbock, Douglas T.
Gazzinelli, Ricardo T.
author_facet Ataide, Marco A.
Andrade, Warrison A.
Zamboni, Dario S.
Wang, Donghai
Souza, Maria do Carmo
Franklin, Bernardo S.
Elian, Samir
Martins, Flaviano S.
Pereira, Dhelio
Reed, George
Fitzgerald, Katherine A.
Golenbock, Douglas T.
Gazzinelli, Ricardo T.
author_sort Ataide, Marco A.
collection PubMed
description Cyclic paroxysm and high fever are hallmarks of malaria and are associated with high levels of pyrogenic cytokines, including IL-1β. In this report, we describe a signature for the expression of inflammasome-related genes and caspase-1 activation in malaria. Indeed, when we infected mice, Plasmodium infection was sufficient to promote MyD88-mediated caspase-1 activation, dependent on IFN-γ-priming and the expression of inflammasome components ASC, P2X7R, NLRP3 and/or NLRP12. Pro-IL-1β expression required a second stimulation with LPS and was also dependent on IFN-γ-priming and functional TNFR1. As a consequence of Plasmodium-induced caspase-1 activation, mice produced extremely high levels of IL-1β upon a second microbial stimulus, and became hypersensitive to septic shock. Therapeutic intervention with IL-1 receptor antagonist prevented bacterial-induced lethality in rodents. Similar to mice, we observed a significantly increased frequency of circulating CD14(+)CD16(−)Caspase-1(+) and CD14(dim)CD16(+)Caspase-1(+) monocytes in peripheral blood mononuclear cells from febrile malaria patients. These cells readily produced large amounts of IL-1β after stimulation with LPS. Furthermore, we observed the presence of inflammasome complexes in monocytes from malaria patients containing either NLRP3 or NLRP12 pyroptosomes. We conclude that NLRP12/NLRP3-dependent activation of caspase-1 is likely to be a key event in mediating systemic production of IL-1β and hypersensitivity to secondary bacterial infection during malaria.
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spelling pubmed-38942092014-01-21 Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection Ataide, Marco A. Andrade, Warrison A. Zamboni, Dario S. Wang, Donghai Souza, Maria do Carmo Franklin, Bernardo S. Elian, Samir Martins, Flaviano S. Pereira, Dhelio Reed, George Fitzgerald, Katherine A. Golenbock, Douglas T. Gazzinelli, Ricardo T. PLoS Pathog Research Article Cyclic paroxysm and high fever are hallmarks of malaria and are associated with high levels of pyrogenic cytokines, including IL-1β. In this report, we describe a signature for the expression of inflammasome-related genes and caspase-1 activation in malaria. Indeed, when we infected mice, Plasmodium infection was sufficient to promote MyD88-mediated caspase-1 activation, dependent on IFN-γ-priming and the expression of inflammasome components ASC, P2X7R, NLRP3 and/or NLRP12. Pro-IL-1β expression required a second stimulation with LPS and was also dependent on IFN-γ-priming and functional TNFR1. As a consequence of Plasmodium-induced caspase-1 activation, mice produced extremely high levels of IL-1β upon a second microbial stimulus, and became hypersensitive to septic shock. Therapeutic intervention with IL-1 receptor antagonist prevented bacterial-induced lethality in rodents. Similar to mice, we observed a significantly increased frequency of circulating CD14(+)CD16(−)Caspase-1(+) and CD14(dim)CD16(+)Caspase-1(+) monocytes in peripheral blood mononuclear cells from febrile malaria patients. These cells readily produced large amounts of IL-1β after stimulation with LPS. Furthermore, we observed the presence of inflammasome complexes in monocytes from malaria patients containing either NLRP3 or NLRP12 pyroptosomes. We conclude that NLRP12/NLRP3-dependent activation of caspase-1 is likely to be a key event in mediating systemic production of IL-1β and hypersensitivity to secondary bacterial infection during malaria. Public Library of Science 2014-01-16 /pmc/articles/PMC3894209/ /pubmed/24453977 http://dx.doi.org/10.1371/journal.ppat.1003885 Text en © 2014 Ataide 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
Ataide, Marco A.
Andrade, Warrison A.
Zamboni, Dario S.
Wang, Donghai
Souza, Maria do Carmo
Franklin, Bernardo S.
Elian, Samir
Martins, Flaviano S.
Pereira, Dhelio
Reed, George
Fitzgerald, Katherine A.
Golenbock, Douglas T.
Gazzinelli, Ricardo T.
Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title_full Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title_fullStr Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title_full_unstemmed Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title_short Malaria-Induced NLRP12/NLRP3-Dependent Caspase-1 Activation Mediates Inflammation and Hypersensitivity to Bacterial Superinfection
title_sort malaria-induced nlrp12/nlrp3-dependent caspase-1 activation mediates inflammation and hypersensitivity to bacterial superinfection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3894209/
https://www.ncbi.nlm.nih.gov/pubmed/24453977
http://dx.doi.org/10.1371/journal.ppat.1003885
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