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Proteomic Analysis Reveals a Predominant NFE2L2 (NRF2) Signature in Canonical Pathway and Upstream Regulator Analysis of Leishmania-Infected Macrophages.
de Menezes, Juliana Perrone Bezerra; Khouri, Ricardo; Oliveira, Camila Victoria Sousa; Petersen, Antonio Luis de Oliveira Almeida; de Almeida, Tais Fontoura; Mendes, Flávia R L; Rebouças, Amanda do Amor Divino; Lorentz, Amanda Lopes; Luz, Nívea Farias; Lima, Jonilson Berlink; Ramos, Pablo Ivan Pereira; Soares, Rodrigo Pedro; Rugani, Jeronimo Nunes; Buck, Gregory A; Krieger, Marco Aurélio; Marchini, Fabrício Klerynton; Vivarini, Áislan de Carvalho; Lopes, Ulisses Gazos; Borges, Valéria de Matos; Veras, Patricia Sampaio Tavares.
Afiliação
  • de Menezes JPB; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Khouri R; Laboratory of Vector Born Infectious Diseases, Gonçalo Moniz Institute, Salvador, Brazil.
  • Oliveira CVS; Department of Pathology and Legal Medicine, Faculty of Medicine, Federal University of Bahia, Salvador, Brazil.
  • Petersen ALOA; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • de Almeida TF; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Mendes FRL; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Rebouças ADAD; Laboratory of Physiopathology, Federal University of Rio de Janeiro, Macaé, Brazil.
  • Lorentz AL; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Luz NF; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Lima JB; Laboratory of Host-Parasite Interaction and Epidemiology, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Ramos PIP; Laboratory of Inflammation and Biomarkers, Gonçalo Moniz Institute, Salvador, Brazil.
  • Soares RP; Centro de Ciências Biológicas e da Saúde, Federal University of the Western of Bahia, Barreiras, Brazil.
  • Rugani JN; Center for Data and Knowledge Integration for Health, Gonçalo Moniz Institute, Fiocruz-Bahia, Salvador, Brazil.
  • Buck GA; René Rachou Institute, Fiocruz-Minas Gerais, Belo Horizonte, Brazil.
  • Krieger MA; René Rachou Institute, Fiocruz-Minas Gerais, Belo Horizonte, Brazil.
  • Marchini FK; Department of Microbiology and Immunology, Virginia Commonwealth University, Richmond, VA, United States.
  • Vivarini ÁC; Carlos Chagas Institute, Fiocruz-Paraná, Paraná, Brazil.
  • Lopes UG; Carlos Chagas Institute, Fiocruz-Paraná, Paraná, Brazil.
  • Borges VM; Laboratory of Molecular Parasitology, Center of Health Science, Carlos Chagas Filho Biophysics Institute, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.
  • Veras PST; Laboratory of Molecular Parasitology, Center of Health Science, Carlos Chagas Filho Biophysics Institute, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.
Front Immunol ; 10: 1362, 2019.
Article em En | MEDLINE | ID: mdl-31316499
ABSTRACT
CBA mice macrophages (MØ) control infection by Leishmania major and are susceptive to Leishmania amazonensis, suggesting that both parasite species induce distinct responses that play important roles in infection outcome. To evaluate the MØ responses to infection arising from these two Leishmania species, a proteomic study using a Multidimensional Protein Identification Technology (MudPIT) approach with liquid chromatography tandem mass spectrometry (LC-MS/MS) was carried out on CBA mice bone-marrow MØ (BMMØ). Following SEQUEST analysis, which revealed 2,838 proteins detected in BMMØ, data mining approach found six proteins significantly associated with the tested conditions. To investigate their biological significance, enrichment analysis was performed using Ingenuity Pathway Analysis (IPA). A three steps IPA approach revealed 4 Canonical Pathways (CP) and 7 Upstream Transcriptional Factors (UTFs) strongly associated with the infection process. NRF2 signatures were present in both CPs and UTFs pathways. Proteins involved in iron metabolism, such as heme oxigenase 1 (HO-1) and ferritin besides sequestosome (SQSMT1 or p62) were found in the NRF2 CPs and the NRF2 UTFs. Differences in the involvement of iron metabolism pathway in Leishmania infection was revealed by the presence of HO-1 and ferritin. Noteworty, HO-1 was strongly associated with L. amazonensis infection, while ferritin was regulated by both species. As expected, higher HO-1 and p62 expressions were validated in L. amazonensis-infected BMMØ, in addition to decreased expression of ferritin and nitric oxide production. Moreover, BMMØ incubated with L. amazonensis LPG also expressed higher levels of HO-1 in comparison to those stimulated with L. major LPG. In addition, L. amazonensis-induced uptake of holoTf was higher than that induced by L. major in BMMØ, and holoTf was also detected at higher levels in vacuoles induced by L. amazonensis. Taken together, these findings indicate that NRF2 pathway activation and increased HO-1 production, together with higher levels of holoTf uptake, may promote permissiveness to L. amazonensis infection. In this context, differences in protein signatures triggered in the host by L. amazonensis and L. major infection could drive the outcomes in distinct clinical forms of leishmaniasis.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Leishmaniose / Fator 2 Relacionado a NF-E2 / Macrófagos Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Leishmaniose / Fator 2 Relacionado a NF-E2 / Macrófagos Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article