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Autophagy Is an Innate Mechanism Associated with Leprosy Polarization

Leprosy is a chronic infectious disease that may present different clinical forms according to the immune response of the host. Levels of IFN-γ are significantly raised in paucibacillary tuberculoid (T-lep) when compared with multibacillary lepromatous (L-lep) patients. IFN-γ primes macrophages for...

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Autores principales: Silva, Bruno Jorge de Andrade, Barbosa, Mayara Garcia de Mattos, Andrade, Priscila Ribeiro, Ferreira, Helen, Nery, José Augusto da Costa, Côrte-Real, Suzana, da Silva, Gilberto Marcelo Sperandio, Rosa, Patricia Sammarco, Fabri, Mario, Sarno, Euzenir Nunes, Pinheiro, Roberta Olmo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215777/
https://www.ncbi.nlm.nih.gov/pubmed/28056107
http://dx.doi.org/10.1371/journal.ppat.1006103
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author Silva, Bruno Jorge de Andrade
Barbosa, Mayara Garcia de Mattos
Andrade, Priscila Ribeiro
Ferreira, Helen
Nery, José Augusto da Costa
Côrte-Real, Suzana
da Silva, Gilberto Marcelo Sperandio
Rosa, Patricia Sammarco
Fabri, Mario
Sarno, Euzenir Nunes
Pinheiro, Roberta Olmo
author_facet Silva, Bruno Jorge de Andrade
Barbosa, Mayara Garcia de Mattos
Andrade, Priscila Ribeiro
Ferreira, Helen
Nery, José Augusto da Costa
Côrte-Real, Suzana
da Silva, Gilberto Marcelo Sperandio
Rosa, Patricia Sammarco
Fabri, Mario
Sarno, Euzenir Nunes
Pinheiro, Roberta Olmo
author_sort Silva, Bruno Jorge de Andrade
collection PubMed
description Leprosy is a chronic infectious disease that may present different clinical forms according to the immune response of the host. Levels of IFN-γ are significantly raised in paucibacillary tuberculoid (T-lep) when compared with multibacillary lepromatous (L-lep) patients. IFN-γ primes macrophages for inflammatory activation and induces the autophagy antimicrobial mechanism. The involvement of autophagy in the immune response against Mycobacterium leprae remains unexplored. Here, we demonstrated by different autophagic assays that LC3-positive autophagosomes were predominantly observed in T-lep when compared with L-lep lesions and skin-derived macrophages. Accumulation of the autophagic receptors SQSTM1/p62 and NBR1, expression of lysosomal antimicrobial peptides and colocalization analysis of autolysosomes revealed an impairment of the autophagic flux in L-lep cells, which was restored by IFN-γ or rapamycin treatment. Autophagy PCR array gene-expression analysis revealed a significantly upregulation of autophagy genes (BECN1, GPSM3, ATG14, APOL1, and TPR) in T-lep cells. Furthermore, an upregulation of autophagy genes (TPR, GFI1B and GNAI3) as well as LC3 levels was observed in cells of L-lep patients that developed type 1 reaction (T1R) episodes, an acute inflammatory condition associated with increased IFN-γ levels. Finally, we observed increased BCL2 expression in L-lep cells that could be responsible for the blockage of BECN1-mediated autophagy. In addition, in vitro studies demonstrated that dead, but not live M. leprae can induce autophagy in primary and lineage human monocytes, and that live mycobacteria can reduce the autophagy activation triggered by dead mycobacteria, suggesting that M. leprae may hamper the autophagic machinery as an immune escape mechanism. Together, these results indicate that autophagy is an important innate mechanism associated with the M. leprae control in skin macrophages.
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spelling pubmed-52157772017-01-19 Autophagy Is an Innate Mechanism Associated with Leprosy Polarization Silva, Bruno Jorge de Andrade Barbosa, Mayara Garcia de Mattos Andrade, Priscila Ribeiro Ferreira, Helen Nery, José Augusto da Costa Côrte-Real, Suzana da Silva, Gilberto Marcelo Sperandio Rosa, Patricia Sammarco Fabri, Mario Sarno, Euzenir Nunes Pinheiro, Roberta Olmo PLoS Pathog Research Article Leprosy is a chronic infectious disease that may present different clinical forms according to the immune response of the host. Levels of IFN-γ are significantly raised in paucibacillary tuberculoid (T-lep) when compared with multibacillary lepromatous (L-lep) patients. IFN-γ primes macrophages for inflammatory activation and induces the autophagy antimicrobial mechanism. The involvement of autophagy in the immune response against Mycobacterium leprae remains unexplored. Here, we demonstrated by different autophagic assays that LC3-positive autophagosomes were predominantly observed in T-lep when compared with L-lep lesions and skin-derived macrophages. Accumulation of the autophagic receptors SQSTM1/p62 and NBR1, expression of lysosomal antimicrobial peptides and colocalization analysis of autolysosomes revealed an impairment of the autophagic flux in L-lep cells, which was restored by IFN-γ or rapamycin treatment. Autophagy PCR array gene-expression analysis revealed a significantly upregulation of autophagy genes (BECN1, GPSM3, ATG14, APOL1, and TPR) in T-lep cells. Furthermore, an upregulation of autophagy genes (TPR, GFI1B and GNAI3) as well as LC3 levels was observed in cells of L-lep patients that developed type 1 reaction (T1R) episodes, an acute inflammatory condition associated with increased IFN-γ levels. Finally, we observed increased BCL2 expression in L-lep cells that could be responsible for the blockage of BECN1-mediated autophagy. In addition, in vitro studies demonstrated that dead, but not live M. leprae can induce autophagy in primary and lineage human monocytes, and that live mycobacteria can reduce the autophagy activation triggered by dead mycobacteria, suggesting that M. leprae may hamper the autophagic machinery as an immune escape mechanism. Together, these results indicate that autophagy is an important innate mechanism associated with the M. leprae control in skin macrophages. Public Library of Science 2017-01-05 /pmc/articles/PMC5215777/ /pubmed/28056107 http://dx.doi.org/10.1371/journal.ppat.1006103 Text en © 2017 Silva 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
Silva, Bruno Jorge de Andrade
Barbosa, Mayara Garcia de Mattos
Andrade, Priscila Ribeiro
Ferreira, Helen
Nery, José Augusto da Costa
Côrte-Real, Suzana
da Silva, Gilberto Marcelo Sperandio
Rosa, Patricia Sammarco
Fabri, Mario
Sarno, Euzenir Nunes
Pinheiro, Roberta Olmo
Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title_full Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title_fullStr Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title_full_unstemmed Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title_short Autophagy Is an Innate Mechanism Associated with Leprosy Polarization
title_sort autophagy is an innate mechanism associated with leprosy polarization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215777/
https://www.ncbi.nlm.nih.gov/pubmed/28056107
http://dx.doi.org/10.1371/journal.ppat.1006103
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