Cargando…

Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration

Cystine and cysteine are important molecules for pathways such as redox signaling and regulation, and thus identifying cellular deficits upon deletion of the Saccharomyces cerevisiae cystine transporter Ers1p allows for a further understanding of cystine homeostasis. Previous complementation studies...

Descripción completa

Detalles Bibliográficos
Autores principales: Simpkins, Jessica A., Rickel, Kirby E., Madeo, Marianna, Ahlers, Bethany A., Carlisle, Gabriel B., Nelson, Heidi J., Cardillo, Andrew L., Weber, Emily A., Vitiello, Peter F., Pearce, David A., Vitiello, Seasson P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4920189/
https://www.ncbi.nlm.nih.gov/pubmed/27142334
http://dx.doi.org/10.1242/bio.017517
_version_ 1782439361151762432
author Simpkins, Jessica A.
Rickel, Kirby E.
Madeo, Marianna
Ahlers, Bethany A.
Carlisle, Gabriel B.
Nelson, Heidi J.
Cardillo, Andrew L.
Weber, Emily A.
Vitiello, Peter F.
Pearce, David A.
Vitiello, Seasson P.
author_facet Simpkins, Jessica A.
Rickel, Kirby E.
Madeo, Marianna
Ahlers, Bethany A.
Carlisle, Gabriel B.
Nelson, Heidi J.
Cardillo, Andrew L.
Weber, Emily A.
Vitiello, Peter F.
Pearce, David A.
Vitiello, Seasson P.
author_sort Simpkins, Jessica A.
collection PubMed
description Cystine and cysteine are important molecules for pathways such as redox signaling and regulation, and thus identifying cellular deficits upon deletion of the Saccharomyces cerevisiae cystine transporter Ers1p allows for a further understanding of cystine homeostasis. Previous complementation studies using the human ortholog suggest yeast Ers1p is a cystine transporter. Human CTNS encodes the protein Cystinosin, a cystine transporter that is embedded in the lysosomal membrane and facilitates the export of cystine from the lysosome. When CTNS is mutated, cystine transport is disrupted, leading to cystine accumulation, the diagnostic hallmark of the lysosomal storage disorder cystinosis. Here, we provide biochemical evidence for Ers1p-dependent cystine transport. However, the accumulation of intracellular cystine is not observed when the ERS1 gene is deleted from ers1-Δ yeast, supporting the existence of modifier genes that provide a mechanism in ers1-Δ yeast that prevents or corrects cystine accumulation. Upon comparison of the transcriptomes of isogenic ERS1+ and ers1-Δ strains of S. cerevisiae by DNA microarray followed by targeted qPCR, sixteen genes were identified as being differentially expressed between the two genotypes. Genes that encode proteins functioning in sulfur regulation, cellular respiration, and general transport were enriched in our screen, demonstrating pleiotropic effects of ers1-Δ. These results give insight into yeast cystine regulation and the multiple, seemingly distal, pathways that involve proper cystine recycling.
format Online
Article
Text
id pubmed-4920189
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher The Company of Biologists Ltd
record_format MEDLINE/PubMed
spelling pubmed-49201892016-07-07 Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration Simpkins, Jessica A. Rickel, Kirby E. Madeo, Marianna Ahlers, Bethany A. Carlisle, Gabriel B. Nelson, Heidi J. Cardillo, Andrew L. Weber, Emily A. Vitiello, Peter F. Pearce, David A. Vitiello, Seasson P. Biol Open Research Article Cystine and cysteine are important molecules for pathways such as redox signaling and regulation, and thus identifying cellular deficits upon deletion of the Saccharomyces cerevisiae cystine transporter Ers1p allows for a further understanding of cystine homeostasis. Previous complementation studies using the human ortholog suggest yeast Ers1p is a cystine transporter. Human CTNS encodes the protein Cystinosin, a cystine transporter that is embedded in the lysosomal membrane and facilitates the export of cystine from the lysosome. When CTNS is mutated, cystine transport is disrupted, leading to cystine accumulation, the diagnostic hallmark of the lysosomal storage disorder cystinosis. Here, we provide biochemical evidence for Ers1p-dependent cystine transport. However, the accumulation of intracellular cystine is not observed when the ERS1 gene is deleted from ers1-Δ yeast, supporting the existence of modifier genes that provide a mechanism in ers1-Δ yeast that prevents or corrects cystine accumulation. Upon comparison of the transcriptomes of isogenic ERS1+ and ers1-Δ strains of S. cerevisiae by DNA microarray followed by targeted qPCR, sixteen genes were identified as being differentially expressed between the two genotypes. Genes that encode proteins functioning in sulfur regulation, cellular respiration, and general transport were enriched in our screen, demonstrating pleiotropic effects of ers1-Δ. These results give insight into yeast cystine regulation and the multiple, seemingly distal, pathways that involve proper cystine recycling. The Company of Biologists Ltd 2016-05-03 /pmc/articles/PMC4920189/ /pubmed/27142334 http://dx.doi.org/10.1242/bio.017517 Text en © 2016. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Simpkins, Jessica A.
Rickel, Kirby E.
Madeo, Marianna
Ahlers, Bethany A.
Carlisle, Gabriel B.
Nelson, Heidi J.
Cardillo, Andrew L.
Weber, Emily A.
Vitiello, Peter F.
Pearce, David A.
Vitiello, Seasson P.
Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title_full Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title_fullStr Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title_full_unstemmed Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title_short Disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
title_sort disruption of a cystine transporter downregulates expression of genes involved in sulfur regulation and cellular respiration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4920189/
https://www.ncbi.nlm.nih.gov/pubmed/27142334
http://dx.doi.org/10.1242/bio.017517
work_keys_str_mv AT simpkinsjessicaa disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT rickelkirbye disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT madeomarianna disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT ahlersbethanya disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT carlislegabrielb disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT nelsonheidij disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT cardilloandrewl disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT weberemilya disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT vitiellopeterf disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT pearcedavida disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration
AT vitielloseassonp disruptionofacystinetransporterdownregulatesexpressionofgenesinvolvedinsulfurregulationandcellularrespiration