Cargando…

Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice

Leishmania spp. infection outcomes are dependent on both host and parasite factors. Manipulation of host signaling pathways involved in the generation of immune responses is thought to be one of the most common mechanisms used by parasites for persistence within the host. Considering the diversity o...

Descripción completa

Detalles Bibliográficos
Autores principales: Oliveira, Leandro G., Souza-Testasicca, Míriam C., Ricotta, Tiago Nery Queiroga, Vago, Juliana P., dos Santos, Liliane M., Crepaldi, Frederico, Lima, Kátia M., Queiroz-Junior, Celso, Sousa, Lirlândia P., Fernandes, Ana Paula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8821891/
https://www.ncbi.nlm.nih.gov/pubmed/35145518
http://dx.doi.org/10.3389/fimmu.2022.762080
_version_ 1784646494165401600
author Oliveira, Leandro G.
Souza-Testasicca, Míriam C.
Ricotta, Tiago Nery Queiroga
Vago, Juliana P.
dos Santos, Liliane M.
Crepaldi, Frederico
Lima, Kátia M.
Queiroz-Junior, Celso
Sousa, Lirlândia P.
Fernandes, Ana Paula
author_facet Oliveira, Leandro G.
Souza-Testasicca, Míriam C.
Ricotta, Tiago Nery Queiroga
Vago, Juliana P.
dos Santos, Liliane M.
Crepaldi, Frederico
Lima, Kátia M.
Queiroz-Junior, Celso
Sousa, Lirlândia P.
Fernandes, Ana Paula
author_sort Oliveira, Leandro G.
collection PubMed
description Leishmania spp. infection outcomes are dependent on both host and parasite factors. Manipulation of host signaling pathways involved in the generation of immune responses is thought to be one of the most common mechanisms used by parasites for persistence within the host. Considering the diversity of pathologies caused by different Leishmania spp., it is plausible that significant differences may exist in the mechanisms of host cell manipulation by each parasite species, which may have implications when developing new vaccine or treatment strategies. Here we show that in L. braziliensis-infection in BALB/c mice, a model of resistance, activation of ERK1/2 coincides with the peak of inflammatory responses and resolution of tissue parasitism. In contrast, in the susceptibility model of L. amazonensis-infection, an early silent phase of infection is observed, detected solely by quantification of parasite loads. At this early stage, only basal levels of P-ERK1/2 are observed. Later, after a brief shutdown of ERK1/2 phosphorylation, disease progression is observed and is associated with increased inflammation, lesion size and tissue parasitism. Moreover, the short-term down-regulation of ERK1/2 activation affected significantly downstream inflammatory pathways and adaptive T cell responses. Administration of U0126, a MEK/ERK inhibitor, confirmed this phenomenon, since bigger lesions and higher parasite loads were seen in infected mice that received U0126. To investigate how kinetics of ERK1/2 activation could affect the disease progression, U0126 was administered to L. amazonensis-infected animals earlier than the P-ERK1/2 switch off time-point. This intervention resulted in anticipation of the same effects on inflammatory responses and susceptibility phenotype seen in the natural course of infection. Additionally, in vitro inhibition of ERK1/2 affected the phagocytosis of L. amazonensis by BMDMs. Collectively, our findings reveal distinct temporal patterns of activation of inflammatory responses in L. braziliensis and L. amazonensis in the same animal background and a pivotal role for a brief and specific shutdown of ERK1/2 activation at late stages of L. amazonensis infection. Since activation of inflammatory responses is a crucial aspect for the control of infectious processes, these findings may be important for the search of new and specific strategies of vaccines and treatment for tegumentary leishmaniasis.
format Online
Article
Text
id pubmed-8821891
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-88218912022-02-09 Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice Oliveira, Leandro G. Souza-Testasicca, Míriam C. Ricotta, Tiago Nery Queiroga Vago, Juliana P. dos Santos, Liliane M. Crepaldi, Frederico Lima, Kátia M. Queiroz-Junior, Celso Sousa, Lirlândia P. Fernandes, Ana Paula Front Immunol Immunology Leishmania spp. infection outcomes are dependent on both host and parasite factors. Manipulation of host signaling pathways involved in the generation of immune responses is thought to be one of the most common mechanisms used by parasites for persistence within the host. Considering the diversity of pathologies caused by different Leishmania spp., it is plausible that significant differences may exist in the mechanisms of host cell manipulation by each parasite species, which may have implications when developing new vaccine or treatment strategies. Here we show that in L. braziliensis-infection in BALB/c mice, a model of resistance, activation of ERK1/2 coincides with the peak of inflammatory responses and resolution of tissue parasitism. In contrast, in the susceptibility model of L. amazonensis-infection, an early silent phase of infection is observed, detected solely by quantification of parasite loads. At this early stage, only basal levels of P-ERK1/2 are observed. Later, after a brief shutdown of ERK1/2 phosphorylation, disease progression is observed and is associated with increased inflammation, lesion size and tissue parasitism. Moreover, the short-term down-regulation of ERK1/2 activation affected significantly downstream inflammatory pathways and adaptive T cell responses. Administration of U0126, a MEK/ERK inhibitor, confirmed this phenomenon, since bigger lesions and higher parasite loads were seen in infected mice that received U0126. To investigate how kinetics of ERK1/2 activation could affect the disease progression, U0126 was administered to L. amazonensis-infected animals earlier than the P-ERK1/2 switch off time-point. This intervention resulted in anticipation of the same effects on inflammatory responses and susceptibility phenotype seen in the natural course of infection. Additionally, in vitro inhibition of ERK1/2 affected the phagocytosis of L. amazonensis by BMDMs. Collectively, our findings reveal distinct temporal patterns of activation of inflammatory responses in L. braziliensis and L. amazonensis in the same animal background and a pivotal role for a brief and specific shutdown of ERK1/2 activation at late stages of L. amazonensis infection. Since activation of inflammatory responses is a crucial aspect for the control of infectious processes, these findings may be important for the search of new and specific strategies of vaccines and treatment for tegumentary leishmaniasis. Frontiers Media S.A. 2022-01-25 /pmc/articles/PMC8821891/ /pubmed/35145518 http://dx.doi.org/10.3389/fimmu.2022.762080 Text en Copyright © 2022 Oliveira, Souza-Testasicca, Ricotta, Vago, dos Santos, Crepaldi, Lima, Queiroz-Junior, Sousa and Fernandes https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Oliveira, Leandro G.
Souza-Testasicca, Míriam C.
Ricotta, Tiago Nery Queiroga
Vago, Juliana P.
dos Santos, Liliane M.
Crepaldi, Frederico
Lima, Kátia M.
Queiroz-Junior, Celso
Sousa, Lirlândia P.
Fernandes, Ana Paula
Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title_full Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title_fullStr Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title_full_unstemmed Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title_short Temporary Shutdown of ERK1/2 Phosphorylation Is Associated With Activation of Adaptive Immune Cell Responses and Disease Progression During Leishmania amazonensis Infection in BALB/c Mice
title_sort temporary shutdown of erk1/2 phosphorylation is associated with activation of adaptive immune cell responses and disease progression during leishmania amazonensis infection in balb/c mice
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8821891/
https://www.ncbi.nlm.nih.gov/pubmed/35145518
http://dx.doi.org/10.3389/fimmu.2022.762080
work_keys_str_mv AT oliveiraleandrog temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT souzatestasiccamiriamc temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT ricottatiagoneryqueiroga temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT vagojulianap temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT dossantoslilianem temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT crepaldifrederico temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT limakatiam temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT queirozjuniorcelso temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT sousalirlandiap temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice
AT fernandesanapaula temporaryshutdownoferk12phosphorylationisassociatedwithactivationofadaptiveimmunecellresponsesanddiseaseprogressionduringleishmaniaamazonensisinfectioninbalbcmice