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Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast

Heavy metal and metalloid contaminations are among the most concerning types of pollutant in the environment. Consequently, it is important to investigate the molecular mechanisms of cellular responses and detoxification pathways for these compounds in living organisms. To date, a number of genes ha...

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Autores principales: Moteshareie, Houman, Hajikarimlou, Maryam, Mulet Indrayanti, Alex, Burnside, Daniel, Paula Dias, Ana, Lettl, Clara, Ahmed, Duale, Omidi, Katayoun, Kazmirchuk, Tom, Puchacz, Nathalie, Zare, Narges, Takallou, Sarah, Naing, Thet, Hernández, Raúl Bonne, Willmore, William G., Babu, Mohan, McKay, Bruce, Samanfar, Bahram, Holcik, Martin, Golshani, Ashkan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145592/
https://www.ncbi.nlm.nih.gov/pubmed/30231023
http://dx.doi.org/10.1371/journal.pone.0198704
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author Moteshareie, Houman
Hajikarimlou, Maryam
Mulet Indrayanti, Alex
Burnside, Daniel
Paula Dias, Ana
Lettl, Clara
Ahmed, Duale
Omidi, Katayoun
Kazmirchuk, Tom
Puchacz, Nathalie
Zare, Narges
Takallou, Sarah
Naing, Thet
Hernández, Raúl Bonne
Willmore, William G.
Babu, Mohan
McKay, Bruce
Samanfar, Bahram
Holcik, Martin
Golshani, Ashkan
author_facet Moteshareie, Houman
Hajikarimlou, Maryam
Mulet Indrayanti, Alex
Burnside, Daniel
Paula Dias, Ana
Lettl, Clara
Ahmed, Duale
Omidi, Katayoun
Kazmirchuk, Tom
Puchacz, Nathalie
Zare, Narges
Takallou, Sarah
Naing, Thet
Hernández, Raúl Bonne
Willmore, William G.
Babu, Mohan
McKay, Bruce
Samanfar, Bahram
Holcik, Martin
Golshani, Ashkan
author_sort Moteshareie, Houman
collection PubMed
description Heavy metal and metalloid contaminations are among the most concerning types of pollutant in the environment. Consequently, it is important to investigate the molecular mechanisms of cellular responses and detoxification pathways for these compounds in living organisms. To date, a number of genes have been linked to the detoxification process. The expression of these genes can be controlled at both transcriptional and translational levels. In baker’s yeast, Saccharomyces cerevisiae, resistance to a wide range of toxic metals is regulated by glutathione S-transferases. Yeast URE2 encodes for a protein that has glutathione peroxidase activity and is homologous to mammalian glutathione S-transferases. The URE2 expression is critical to cell survival under heavy metal stress. Here, we report on the finding of two genes, ITT1, an inhibitor of translation termination, and RPS1A, a small ribosomal protein, that when deleted yeast cells exhibit similar metal sensitivity phenotypes to gene deletion strain for URE2. Neither of these genes were previously linked to metal toxicity. Our gene expression analysis illustrates that these two genes affect URE2 mRNA expression at the level of translation.
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spelling pubmed-61455922018-09-27 Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast Moteshareie, Houman Hajikarimlou, Maryam Mulet Indrayanti, Alex Burnside, Daniel Paula Dias, Ana Lettl, Clara Ahmed, Duale Omidi, Katayoun Kazmirchuk, Tom Puchacz, Nathalie Zare, Narges Takallou, Sarah Naing, Thet Hernández, Raúl Bonne Willmore, William G. Babu, Mohan McKay, Bruce Samanfar, Bahram Holcik, Martin Golshani, Ashkan PLoS One Research Article Heavy metal and metalloid contaminations are among the most concerning types of pollutant in the environment. Consequently, it is important to investigate the molecular mechanisms of cellular responses and detoxification pathways for these compounds in living organisms. To date, a number of genes have been linked to the detoxification process. The expression of these genes can be controlled at both transcriptional and translational levels. In baker’s yeast, Saccharomyces cerevisiae, resistance to a wide range of toxic metals is regulated by glutathione S-transferases. Yeast URE2 encodes for a protein that has glutathione peroxidase activity and is homologous to mammalian glutathione S-transferases. The URE2 expression is critical to cell survival under heavy metal stress. Here, we report on the finding of two genes, ITT1, an inhibitor of translation termination, and RPS1A, a small ribosomal protein, that when deleted yeast cells exhibit similar metal sensitivity phenotypes to gene deletion strain for URE2. Neither of these genes were previously linked to metal toxicity. Our gene expression analysis illustrates that these two genes affect URE2 mRNA expression at the level of translation. Public Library of Science 2018-09-19 /pmc/articles/PMC6145592/ /pubmed/30231023 http://dx.doi.org/10.1371/journal.pone.0198704 Text en © 2018 Moteshareie 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
Moteshareie, Houman
Hajikarimlou, Maryam
Mulet Indrayanti, Alex
Burnside, Daniel
Paula Dias, Ana
Lettl, Clara
Ahmed, Duale
Omidi, Katayoun
Kazmirchuk, Tom
Puchacz, Nathalie
Zare, Narges
Takallou, Sarah
Naing, Thet
Hernández, Raúl Bonne
Willmore, William G.
Babu, Mohan
McKay, Bruce
Samanfar, Bahram
Holcik, Martin
Golshani, Ashkan
Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title_full Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title_fullStr Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title_full_unstemmed Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title_short Heavy metal sensitivities of gene deletion strains for ITT1 and RPS1A connect their activities to the expression of URE2, a key gene involved in metal detoxification in yeast
title_sort heavy metal sensitivities of gene deletion strains for itt1 and rps1a connect their activities to the expression of ure2, a key gene involved in metal detoxification in yeast
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6145592/
https://www.ncbi.nlm.nih.gov/pubmed/30231023
http://dx.doi.org/10.1371/journal.pone.0198704
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