Cargando…

Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase

The genome of trypanosomatids rearranges by using repeated sequences as platforms for amplification or deletion of genomic segments. These stochastic recombination events have a direct impact on gene dosage and foster the selection of adaptive traits in response to environmental pressure. We provide...

Descripción completa

Detalles Bibliográficos
Autores principales: Wargnies, Marion, Plazolles, Nicolas, Schenk, Robin, Villafraz, Oriana, Dupuy, Jean-William, Biran, Marc, Bachmaier, Sabine, Baudouin, Hélène, Clayton, Christine, Boshart, Michael, Bringaud, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8065229/
https://www.ncbi.nlm.nih.gov/pubmed/33741344
http://dx.doi.org/10.1016/j.jbc.2021.100548
_version_ 1783682296035934208
author Wargnies, Marion
Plazolles, Nicolas
Schenk, Robin
Villafraz, Oriana
Dupuy, Jean-William
Biran, Marc
Bachmaier, Sabine
Baudouin, Hélène
Clayton, Christine
Boshart, Michael
Bringaud, Frédéric
author_facet Wargnies, Marion
Plazolles, Nicolas
Schenk, Robin
Villafraz, Oriana
Dupuy, Jean-William
Biran, Marc
Bachmaier, Sabine
Baudouin, Hélène
Clayton, Christine
Boshart, Michael
Bringaud, Frédéric
author_sort Wargnies, Marion
collection PubMed
description The genome of trypanosomatids rearranges by using repeated sequences as platforms for amplification or deletion of genomic segments. These stochastic recombination events have a direct impact on gene dosage and foster the selection of adaptive traits in response to environmental pressure. We provide here such an example by showing that the phosphoenolpyruvate carboxykinase (PEPCK) gene knockout (Δpepck) leads to the selection of a deletion event between two tandemly arranged fumarate reductase (FRDg and FRDm2) genes to produce a chimeric FRDg-m2 gene in the Δpepck∗ cell line. FRDg is expressed in peroxisome-related organelles, named glycosomes, expression of FRDm2 has not been detected to date, and FRDg-m2 is nonfunctional and cytosolic. Re-expression of FRDg significantly impaired growth of the Δpepck∗ cells, but FRD enzyme activity was not required for this negative effect. Instead, glycosomal localization as well as the covalent flavinylation motif of FRD is required to confer growth retardation and intracellular accumulation of reactive oxygen species (ROS). The data suggest that FRDg, similar to Escherichia coli FRD, can generate ROS in a flavin-dependent process by transfer of electrons from NADH to molecular oxygen instead of fumarate when the latter is unavailable, as in the Δpepck background. Hence, growth retardation is interpreted as a consequence of increased production of ROS, and rearrangement of the FRD locus liberates Δpepck∗ cells from this obstacle. Interestingly, intracellular production of ROS has been shown to be required to complete the parasitic cycle in the insect vector, suggesting that FRDg may play a role in this process.
format Online
Article
Text
id pubmed-8065229
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-80652292021-04-27 Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase Wargnies, Marion Plazolles, Nicolas Schenk, Robin Villafraz, Oriana Dupuy, Jean-William Biran, Marc Bachmaier, Sabine Baudouin, Hélène Clayton, Christine Boshart, Michael Bringaud, Frédéric J Biol Chem Research Article The genome of trypanosomatids rearranges by using repeated sequences as platforms for amplification or deletion of genomic segments. These stochastic recombination events have a direct impact on gene dosage and foster the selection of adaptive traits in response to environmental pressure. We provide here such an example by showing that the phosphoenolpyruvate carboxykinase (PEPCK) gene knockout (Δpepck) leads to the selection of a deletion event between two tandemly arranged fumarate reductase (FRDg and FRDm2) genes to produce a chimeric FRDg-m2 gene in the Δpepck∗ cell line. FRDg is expressed in peroxisome-related organelles, named glycosomes, expression of FRDm2 has not been detected to date, and FRDg-m2 is nonfunctional and cytosolic. Re-expression of FRDg significantly impaired growth of the Δpepck∗ cells, but FRD enzyme activity was not required for this negative effect. Instead, glycosomal localization as well as the covalent flavinylation motif of FRD is required to confer growth retardation and intracellular accumulation of reactive oxygen species (ROS). The data suggest that FRDg, similar to Escherichia coli FRD, can generate ROS in a flavin-dependent process by transfer of electrons from NADH to molecular oxygen instead of fumarate when the latter is unavailable, as in the Δpepck background. Hence, growth retardation is interpreted as a consequence of increased production of ROS, and rearrangement of the FRD locus liberates Δpepck∗ cells from this obstacle. Interestingly, intracellular production of ROS has been shown to be required to complete the parasitic cycle in the insect vector, suggesting that FRDg may play a role in this process. American Society for Biochemistry and Molecular Biology 2021-03-17 /pmc/articles/PMC8065229/ /pubmed/33741344 http://dx.doi.org/10.1016/j.jbc.2021.100548 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Wargnies, Marion
Plazolles, Nicolas
Schenk, Robin
Villafraz, Oriana
Dupuy, Jean-William
Biran, Marc
Bachmaier, Sabine
Baudouin, Hélène
Clayton, Christine
Boshart, Michael
Bringaud, Frédéric
Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title_full Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title_fullStr Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title_full_unstemmed Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title_short Metabolic selection of a homologous recombination-mediated gene loss protects Trypanosoma brucei from ROS production by glycosomal fumarate reductase
title_sort metabolic selection of a homologous recombination-mediated gene loss protects trypanosoma brucei from ros production by glycosomal fumarate reductase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8065229/
https://www.ncbi.nlm.nih.gov/pubmed/33741344
http://dx.doi.org/10.1016/j.jbc.2021.100548
work_keys_str_mv AT wargniesmarion metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT plazollesnicolas metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT schenkrobin metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT villafrazoriana metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT dupuyjeanwilliam metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT biranmarc metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT bachmaiersabine metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT baudouinhelene metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT claytonchristine metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT boshartmichael metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase
AT bringaudfrederic metabolicselectionofahomologousrecombinationmediatedgenelossprotectstrypanosomabruceifromrosproductionbyglycosomalfumaratereductase