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Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts

The protozoan parasite Leishmania donovani (L. donovani) causes visceral leishmaniasis, a chronic infection which is fatal when untreated. Herein, we investigated whether in addition to altering transcription, L. donovani modulates host mRNA translation to establish a successful infection. Polysome-...

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Autores principales: Chaparro, Visnu, Leroux, Louis-Philippe, Masvidal, Laia, Lorent, Julie, Graber, Tyson E., Zimmermann, Aude, Arango Duque, Guillermo, Descoteaux, Albert, Alain, Tommy, Larsson, Ola, Jaramillo, Maritza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7310862/
https://www.ncbi.nlm.nih.gov/pubmed/32479529
http://dx.doi.org/10.1371/journal.ppat.1008291
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author Chaparro, Visnu
Leroux, Louis-Philippe
Masvidal, Laia
Lorent, Julie
Graber, Tyson E.
Zimmermann, Aude
Arango Duque, Guillermo
Descoteaux, Albert
Alain, Tommy
Larsson, Ola
Jaramillo, Maritza
author_facet Chaparro, Visnu
Leroux, Louis-Philippe
Masvidal, Laia
Lorent, Julie
Graber, Tyson E.
Zimmermann, Aude
Arango Duque, Guillermo
Descoteaux, Albert
Alain, Tommy
Larsson, Ola
Jaramillo, Maritza
author_sort Chaparro, Visnu
collection PubMed
description The protozoan parasite Leishmania donovani (L. donovani) causes visceral leishmaniasis, a chronic infection which is fatal when untreated. Herein, we investigated whether in addition to altering transcription, L. donovani modulates host mRNA translation to establish a successful infection. Polysome-profiling revealed that one third of protein-coding mRNAs expressed in primary mouse macrophages are differentially translated upon infection with L. donovani promastigotes or amastigotes. Gene ontology analysis identified key biological processes enriched for translationally regulated mRNAs and were predicted to be either activated (e.g. chromatin remodeling and RNA metabolism) or inhibited (e.g. intracellular trafficking and antigen presentation) upon infection. Mechanistic in silico and biochemical analyses showed selective activation mTOR- and eIF4A-dependent mRNA translation, including transcripts encoding central regulators of mRNA turnover and inflammation (i.e. PABPC1, EIF2AK2, and TGF-β). L. donovani survival within macrophages was favored under mTOR inhibition but was dampened by pharmacological blockade of eIF4A. Overall, this study uncovers a vast yet selective reprogramming of the host cell translational landscape early during L. donovani infection, and suggests that some of these changes are involved in host defense mechanisms while others are part of parasite-driven survival strategies. Further in vitro and in vivo investigation will shed light on the contribution of mTOR- and eIF4A-dependent translational programs to the outcome of visceral leishmaniasis.
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spelling pubmed-73108622020-06-26 Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts Chaparro, Visnu Leroux, Louis-Philippe Masvidal, Laia Lorent, Julie Graber, Tyson E. Zimmermann, Aude Arango Duque, Guillermo Descoteaux, Albert Alain, Tommy Larsson, Ola Jaramillo, Maritza PLoS Pathog Research Article The protozoan parasite Leishmania donovani (L. donovani) causes visceral leishmaniasis, a chronic infection which is fatal when untreated. Herein, we investigated whether in addition to altering transcription, L. donovani modulates host mRNA translation to establish a successful infection. Polysome-profiling revealed that one third of protein-coding mRNAs expressed in primary mouse macrophages are differentially translated upon infection with L. donovani promastigotes or amastigotes. Gene ontology analysis identified key biological processes enriched for translationally regulated mRNAs and were predicted to be either activated (e.g. chromatin remodeling and RNA metabolism) or inhibited (e.g. intracellular trafficking and antigen presentation) upon infection. Mechanistic in silico and biochemical analyses showed selective activation mTOR- and eIF4A-dependent mRNA translation, including transcripts encoding central regulators of mRNA turnover and inflammation (i.e. PABPC1, EIF2AK2, and TGF-β). L. donovani survival within macrophages was favored under mTOR inhibition but was dampened by pharmacological blockade of eIF4A. Overall, this study uncovers a vast yet selective reprogramming of the host cell translational landscape early during L. donovani infection, and suggests that some of these changes are involved in host defense mechanisms while others are part of parasite-driven survival strategies. Further in vitro and in vivo investigation will shed light on the contribution of mTOR- and eIF4A-dependent translational programs to the outcome of visceral leishmaniasis. Public Library of Science 2020-06-01 /pmc/articles/PMC7310862/ /pubmed/32479529 http://dx.doi.org/10.1371/journal.ppat.1008291 Text en © 2020 Chaparro 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
Chaparro, Visnu
Leroux, Louis-Philippe
Masvidal, Laia
Lorent, Julie
Graber, Tyson E.
Zimmermann, Aude
Arango Duque, Guillermo
Descoteaux, Albert
Alain, Tommy
Larsson, Ola
Jaramillo, Maritza
Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title_full Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title_fullStr Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title_full_unstemmed Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title_short Translational profiling of macrophages infected with Leishmania donovani identifies mTOR- and eIF4A-sensitive immune-related transcripts
title_sort translational profiling of macrophages infected with leishmania donovani identifies mtor- and eif4a-sensitive immune-related transcripts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7310862/
https://www.ncbi.nlm.nih.gov/pubmed/32479529
http://dx.doi.org/10.1371/journal.ppat.1008291
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