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Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection

Leishmania is a protozoan that causes leishmaniasis, a neglected tropical disease with clinical manifestations classified as cutaneous, mucocutaneous, and visceral leishmaniasis. In the infection context, the parasite can modulate macrophage gene expression affecting the microbicidal activity and im...

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Autores principales: Zanatta, Jonathan Miguel, Acuña, Stephanie Maia, de Souza Angelo, Yan, de Almeida Bento, Camilla, Peron, Jean Pierre Schatzman, Stolf, Beatriz Simonsen, Muxel, Sandra Marcia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065296/
https://www.ncbi.nlm.nih.gov/pubmed/37000792
http://dx.doi.org/10.1371/journal.pone.0283696
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author Zanatta, Jonathan Miguel
Acuña, Stephanie Maia
de Souza Angelo, Yan
de Almeida Bento, Camilla
Peron, Jean Pierre Schatzman
Stolf, Beatriz Simonsen
Muxel, Sandra Marcia
author_facet Zanatta, Jonathan Miguel
Acuña, Stephanie Maia
de Souza Angelo, Yan
de Almeida Bento, Camilla
Peron, Jean Pierre Schatzman
Stolf, Beatriz Simonsen
Muxel, Sandra Marcia
author_sort Zanatta, Jonathan Miguel
collection PubMed
description Leishmania is a protozoan that causes leishmaniasis, a neglected tropical disease with clinical manifestations classified as cutaneous, mucocutaneous, and visceral leishmaniasis. In the infection context, the parasite can modulate macrophage gene expression affecting the microbicidal activity and immune response. The metabolism of L-arginine into polyamines putrescine, spermidine, and spermine reduces nitric oxide (NO) production, favoring Leishmania survival. Here, we investigate the effect of supplementation with L-arginine and polyamines in infection of murine BALB/c macrophages by L. amazonensis and in the transcriptional regulation of genes involved in arginine metabolism and proinflammatory response. We showed a reduction in the percentage of infected macrophages upon putrescine supplementation compared to L-arginine, spermidine, and spermine supplementation. Unexpectedly, deprivation of L-arginine increased nitric oxide synthase (Nos2) gene expression without changes in NO production. Putrescine supplementation increased transcript levels of polyamine metabolism-related genes Arg2, ornithine decarboxylase (Odc1), Spermidine synthase (SpdS), and Spermine synthase (SpmS), but reduced Arg1 in L. amazonensis infected macrophages, while spermidine and spermine promoted opposite effects. Putrescine increased Nos2 expression without leading to NO production, while L-arginine plus spermine led to NO production in uninfected macrophages, suggesting that polyamines can induce NO production. Besides, L-arginine supplementation reduced Il-1b during infection, and L-arginine or L-arginine plus putrescine increased Mcp1 at 24h of infection, suggesting that polyamines availability can interfere with cytokine/chemokine production. Our data showed that putrescine shifts L-arginine-metabolism related-genes on BALB/c macrophages and affects infection by L. amazonensis.
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spelling pubmed-100652962023-04-01 Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection Zanatta, Jonathan Miguel Acuña, Stephanie Maia de Souza Angelo, Yan de Almeida Bento, Camilla Peron, Jean Pierre Schatzman Stolf, Beatriz Simonsen Muxel, Sandra Marcia PLoS One Research Article Leishmania is a protozoan that causes leishmaniasis, a neglected tropical disease with clinical manifestations classified as cutaneous, mucocutaneous, and visceral leishmaniasis. In the infection context, the parasite can modulate macrophage gene expression affecting the microbicidal activity and immune response. The metabolism of L-arginine into polyamines putrescine, spermidine, and spermine reduces nitric oxide (NO) production, favoring Leishmania survival. Here, we investigate the effect of supplementation with L-arginine and polyamines in infection of murine BALB/c macrophages by L. amazonensis and in the transcriptional regulation of genes involved in arginine metabolism and proinflammatory response. We showed a reduction in the percentage of infected macrophages upon putrescine supplementation compared to L-arginine, spermidine, and spermine supplementation. Unexpectedly, deprivation of L-arginine increased nitric oxide synthase (Nos2) gene expression without changes in NO production. Putrescine supplementation increased transcript levels of polyamine metabolism-related genes Arg2, ornithine decarboxylase (Odc1), Spermidine synthase (SpdS), and Spermine synthase (SpmS), but reduced Arg1 in L. amazonensis infected macrophages, while spermidine and spermine promoted opposite effects. Putrescine increased Nos2 expression without leading to NO production, while L-arginine plus spermine led to NO production in uninfected macrophages, suggesting that polyamines can induce NO production. Besides, L-arginine supplementation reduced Il-1b during infection, and L-arginine or L-arginine plus putrescine increased Mcp1 at 24h of infection, suggesting that polyamines availability can interfere with cytokine/chemokine production. Our data showed that putrescine shifts L-arginine-metabolism related-genes on BALB/c macrophages and affects infection by L. amazonensis. Public Library of Science 2023-03-31 /pmc/articles/PMC10065296/ /pubmed/37000792 http://dx.doi.org/10.1371/journal.pone.0283696 Text en © 2023 Zanatta et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Zanatta, Jonathan Miguel
Acuña, Stephanie Maia
de Souza Angelo, Yan
de Almeida Bento, Camilla
Peron, Jean Pierre Schatzman
Stolf, Beatriz Simonsen
Muxel, Sandra Marcia
Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title_full Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title_fullStr Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title_full_unstemmed Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title_short Putrescine supplementation shifts macrophage L-arginine metabolism related-genes reducing Leishmania amazonensis infection
title_sort putrescine supplementation shifts macrophage l-arginine metabolism related-genes reducing leishmania amazonensis infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10065296/
https://www.ncbi.nlm.nih.gov/pubmed/37000792
http://dx.doi.org/10.1371/journal.pone.0283696
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