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The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection

Trypanosoma cruzi, the etiological agent of Chagas disease, consumes glucose and amino acids depending on the environmental availability of each nutrient during its complex life cycle. For example, amino acids are the major energy and carbon sources in the intracellular stages of the T. cruzi parasi...

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Autores principales: Crispim, Marcell, Damasceno, Flávia Silva, Hernández, Agustín, Barisón, María Julia, Pretto Sauter, Ismael, Souza Pavani, Raphael, Santos Moura, Alexandre, Pral, Elizabeth Mieko Furusho, Cortez, Mauro, Elias, Maria Carolina, Silber, Ariel Mariano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5779702/
https://www.ncbi.nlm.nih.gov/pubmed/29320490
http://dx.doi.org/10.1371/journal.pntd.0006170
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author Crispim, Marcell
Damasceno, Flávia Silva
Hernández, Agustín
Barisón, María Julia
Pretto Sauter, Ismael
Souza Pavani, Raphael
Santos Moura, Alexandre
Pral, Elizabeth Mieko Furusho
Cortez, Mauro
Elias, Maria Carolina
Silber, Ariel Mariano
author_facet Crispim, Marcell
Damasceno, Flávia Silva
Hernández, Agustín
Barisón, María Julia
Pretto Sauter, Ismael
Souza Pavani, Raphael
Santos Moura, Alexandre
Pral, Elizabeth Mieko Furusho
Cortez, Mauro
Elias, Maria Carolina
Silber, Ariel Mariano
author_sort Crispim, Marcell
collection PubMed
description Trypanosoma cruzi, the etiological agent of Chagas disease, consumes glucose and amino acids depending on the environmental availability of each nutrient during its complex life cycle. For example, amino acids are the major energy and carbon sources in the intracellular stages of the T. cruzi parasite, but their consumption produces an accumulation of NH(4)(+) in the environment, which is toxic. These parasites do not have a functional urea cycle to secrete excess nitrogen as low-toxicity waste. Glutamine synthetase (GS) plays a central role in regulating the carbon/nitrogen balance in the metabolism of most living organisms. We show here that the gene TcGS from T. cruzi encodes a functional glutamine synthetase; it can complement a defect in the GLN1 gene from Saccharomyces cerevisiae and utilizes ATP, glutamate and ammonium to yield glutamine in vitro. Overall, its kinetic characteristics are similar to other eukaryotic enzymes, and it is dependent on divalent cations. Its cytosolic/mitochondrial localization was confirmed by immunofluorescence. Inhibition by Methionine sulfoximine revealed that GS activity is indispensable under excess ammonium conditions. Coincidently, its expression levels are maximal in the amastigote stage of the life cycle, when amino acids are preferably consumed, and NH(4)(+) production is predictable. During host-cell invasion, TcGS is required for the parasite to escape from the parasitophorous vacuole, a process sine qua non for the parasite to replicate and establish infection in host cells. These results are the first to establish a link between the activity of a metabolic enzyme and the ability of a parasite to reach its intracellular niche to replicate and establish host-cell infection.
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spelling pubmed-57797022018-02-08 The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection Crispim, Marcell Damasceno, Flávia Silva Hernández, Agustín Barisón, María Julia Pretto Sauter, Ismael Souza Pavani, Raphael Santos Moura, Alexandre Pral, Elizabeth Mieko Furusho Cortez, Mauro Elias, Maria Carolina Silber, Ariel Mariano PLoS Negl Trop Dis Research Article Trypanosoma cruzi, the etiological agent of Chagas disease, consumes glucose and amino acids depending on the environmental availability of each nutrient during its complex life cycle. For example, amino acids are the major energy and carbon sources in the intracellular stages of the T. cruzi parasite, but their consumption produces an accumulation of NH(4)(+) in the environment, which is toxic. These parasites do not have a functional urea cycle to secrete excess nitrogen as low-toxicity waste. Glutamine synthetase (GS) plays a central role in regulating the carbon/nitrogen balance in the metabolism of most living organisms. We show here that the gene TcGS from T. cruzi encodes a functional glutamine synthetase; it can complement a defect in the GLN1 gene from Saccharomyces cerevisiae and utilizes ATP, glutamate and ammonium to yield glutamine in vitro. Overall, its kinetic characteristics are similar to other eukaryotic enzymes, and it is dependent on divalent cations. Its cytosolic/mitochondrial localization was confirmed by immunofluorescence. Inhibition by Methionine sulfoximine revealed that GS activity is indispensable under excess ammonium conditions. Coincidently, its expression levels are maximal in the amastigote stage of the life cycle, when amino acids are preferably consumed, and NH(4)(+) production is predictable. During host-cell invasion, TcGS is required for the parasite to escape from the parasitophorous vacuole, a process sine qua non for the parasite to replicate and establish infection in host cells. These results are the first to establish a link between the activity of a metabolic enzyme and the ability of a parasite to reach its intracellular niche to replicate and establish host-cell infection. Public Library of Science 2018-01-10 /pmc/articles/PMC5779702/ /pubmed/29320490 http://dx.doi.org/10.1371/journal.pntd.0006170 Text en © 2018 Crispim 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
Crispim, Marcell
Damasceno, Flávia Silva
Hernández, Agustín
Barisón, María Julia
Pretto Sauter, Ismael
Souza Pavani, Raphael
Santos Moura, Alexandre
Pral, Elizabeth Mieko Furusho
Cortez, Mauro
Elias, Maria Carolina
Silber, Ariel Mariano
The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title_full The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title_fullStr The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title_full_unstemmed The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title_short The glutamine synthetase of Trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
title_sort glutamine synthetase of trypanosoma cruzi is required for its resistance to ammonium accumulation and evasion of the parasitophorous vacuole during host-cell infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5779702/
https://www.ncbi.nlm.nih.gov/pubmed/29320490
http://dx.doi.org/10.1371/journal.pntd.0006170
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