Cargando…

Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages

Mycobacterium leprae (ML), the etiologic agent of leprosy, can subvert macrophage antimicrobial activity by mechanisms that remain only partially understood. In the present study, the participation of hormone insulin-like growth factor I (IGF-I) in this phenomenum was investigated. Macrophages from...

Descripción completa

Detalles Bibliográficos
Autores principales: Batista-Silva, L. R., Rodrigues, Luciana Silva, Vivarini, Aislan de Carvalho, Costa, Fabrício da Mota Ramalho, Mattos, Katherine Antunes de, Costa, Maria Renata Sales Nogueira, Rosa, Patricia Sammarco, Toledo-Pinto, T. G., Dias, André Alves, Moura, Danielle Fonseca, Sarno, Euzenir Nunes, Lopes, Ulisses Gazos, Pessolani, Maria Cristina Vidal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4901318/
https://www.ncbi.nlm.nih.gov/pubmed/27282338
http://dx.doi.org/10.1038/srep27632
_version_ 1782436784647438336
author Batista-Silva, L. R.
Rodrigues, Luciana Silva
Vivarini, Aislan de Carvalho
Costa, Fabrício da Mota Ramalho
Mattos, Katherine Antunes de
Costa, Maria Renata Sales Nogueira
Rosa, Patricia Sammarco
Toledo-Pinto, T. G.
Dias, André Alves
Moura, Danielle Fonseca
Sarno, Euzenir Nunes
Lopes, Ulisses Gazos
Pessolani, Maria Cristina Vidal
author_facet Batista-Silva, L. R.
Rodrigues, Luciana Silva
Vivarini, Aislan de Carvalho
Costa, Fabrício da Mota Ramalho
Mattos, Katherine Antunes de
Costa, Maria Renata Sales Nogueira
Rosa, Patricia Sammarco
Toledo-Pinto, T. G.
Dias, André Alves
Moura, Danielle Fonseca
Sarno, Euzenir Nunes
Lopes, Ulisses Gazos
Pessolani, Maria Cristina Vidal
author_sort Batista-Silva, L. R.
collection PubMed
description Mycobacterium leprae (ML), the etiologic agent of leprosy, can subvert macrophage antimicrobial activity by mechanisms that remain only partially understood. In the present study, the participation of hormone insulin-like growth factor I (IGF-I) in this phenomenum was investigated. Macrophages from the dermal lesions of the disseminated multibacillary lepromatous form (LL) of leprosy expressed higher levels of IGF-I than those from the self-limited paucibacillary tuberculoid form (BT). Higher levels of IGF-I secretion by ML-infected macrophages were confirmed in ex vivo and in vitro studies. Of note, the dampening of IGF-I signaling reverted the capacity of ML-infected human and murine macrophages to produce antimicrobial molecules and promoted bacterial killing. Moreover, IGF-I was shown to inhibit the JAK/STAT1-dependent signaling pathways triggered by both mycobacteria and IFN-γ most probably through its capacity to induce the suppressor of cytokine signaling-3 (SOCS3). Finally, these in vitro findings were corroborated by in vivo observations in which higher SOCS3 expression and lower phosphorylation of STAT1 levels were found in LL versus BT dermal lesions. Altogether, our data strongly suggest that IGF-I contributes to the maintenance of a functional program in infected macrophages that suits ML persistence in the host, reinforcing a key role for IGF-I in leprosy pathogenesis.
format Online
Article
Text
id pubmed-4901318
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-49013182016-06-13 Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages Batista-Silva, L. R. Rodrigues, Luciana Silva Vivarini, Aislan de Carvalho Costa, Fabrício da Mota Ramalho Mattos, Katherine Antunes de Costa, Maria Renata Sales Nogueira Rosa, Patricia Sammarco Toledo-Pinto, T. G. Dias, André Alves Moura, Danielle Fonseca Sarno, Euzenir Nunes Lopes, Ulisses Gazos Pessolani, Maria Cristina Vidal Sci Rep Article Mycobacterium leprae (ML), the etiologic agent of leprosy, can subvert macrophage antimicrobial activity by mechanisms that remain only partially understood. In the present study, the participation of hormone insulin-like growth factor I (IGF-I) in this phenomenum was investigated. Macrophages from the dermal lesions of the disseminated multibacillary lepromatous form (LL) of leprosy expressed higher levels of IGF-I than those from the self-limited paucibacillary tuberculoid form (BT). Higher levels of IGF-I secretion by ML-infected macrophages were confirmed in ex vivo and in vitro studies. Of note, the dampening of IGF-I signaling reverted the capacity of ML-infected human and murine macrophages to produce antimicrobial molecules and promoted bacterial killing. Moreover, IGF-I was shown to inhibit the JAK/STAT1-dependent signaling pathways triggered by both mycobacteria and IFN-γ most probably through its capacity to induce the suppressor of cytokine signaling-3 (SOCS3). Finally, these in vitro findings were corroborated by in vivo observations in which higher SOCS3 expression and lower phosphorylation of STAT1 levels were found in LL versus BT dermal lesions. Altogether, our data strongly suggest that IGF-I contributes to the maintenance of a functional program in infected macrophages that suits ML persistence in the host, reinforcing a key role for IGF-I in leprosy pathogenesis. Nature Publishing Group 2016-06-10 /pmc/articles/PMC4901318/ /pubmed/27282338 http://dx.doi.org/10.1038/srep27632 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Batista-Silva, L. R.
Rodrigues, Luciana Silva
Vivarini, Aislan de Carvalho
Costa, Fabrício da Mota Ramalho
Mattos, Katherine Antunes de
Costa, Maria Renata Sales Nogueira
Rosa, Patricia Sammarco
Toledo-Pinto, T. G.
Dias, André Alves
Moura, Danielle Fonseca
Sarno, Euzenir Nunes
Lopes, Ulisses Gazos
Pessolani, Maria Cristina Vidal
Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title_full Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title_fullStr Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title_full_unstemmed Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title_short Mycobacterium leprae-induced Insulin-like Growth Factor I attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
title_sort mycobacterium leprae-induced insulin-like growth factor i attenuates antimicrobial mechanisms, promoting bacterial survival in macrophages
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4901318/
https://www.ncbi.nlm.nih.gov/pubmed/27282338
http://dx.doi.org/10.1038/srep27632
work_keys_str_mv AT batistasilvalr mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT rodrigueslucianasilva mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT vivariniaislandecarvalho mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT costafabriciodamotaramalho mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT mattoskatherineantunesde mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT costamariarenatasalesnogueira mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT rosapatriciasammarco mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT toledopintotg mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT diasandrealves mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT mouradaniellefonseca mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT sarnoeuzenirnunes mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT lopesulissesgazos mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages
AT pessolanimariacristinavidal mycobacteriumlepraeinducedinsulinlikegrowthfactoriattenuatesantimicrobialmechanismspromotingbacterialsurvivalinmacrophages