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A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae

The extreme resistance of Saccharomyces cerevisiae to copper is overcome by 2-(6-benzyl-2-pyridyl)quinazoline (BPQ), providing a chemical-biology tool which has been exploited in two lines of discovery. First, BPQ is shown to form a red (BPQ)(2)Cu(I) complex and promote Ctr1-independent copper-accum...

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Autores principales: Foster, Andrew W, Dainty, Samantha J, Patterson, Carl J, Pohl, Ehmke, Blackburn, Hannah, Wilson, Clare, Hess, Corinna R, Rutherford, Julian C, Quaranta, Laura, Corran, Andy, Robinson, Nigel J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149784/
https://www.ncbi.nlm.nih.gov/pubmed/24895027
http://dx.doi.org/10.1111/mmi.12661
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author Foster, Andrew W
Dainty, Samantha J
Patterson, Carl J
Pohl, Ehmke
Blackburn, Hannah
Wilson, Clare
Hess, Corinna R
Rutherford, Julian C
Quaranta, Laura
Corran, Andy
Robinson, Nigel J
author_facet Foster, Andrew W
Dainty, Samantha J
Patterson, Carl J
Pohl, Ehmke
Blackburn, Hannah
Wilson, Clare
Hess, Corinna R
Rutherford, Julian C
Quaranta, Laura
Corran, Andy
Robinson, Nigel J
author_sort Foster, Andrew W
collection PubMed
description The extreme resistance of Saccharomyces cerevisiae to copper is overcome by 2-(6-benzyl-2-pyridyl)quinazoline (BPQ), providing a chemical-biology tool which has been exploited in two lines of discovery. First, BPQ is shown to form a red (BPQ)(2)Cu(I) complex and promote Ctr1-independent copper-accumulation in whole cells and in mitochondria isolated from treated cells. Multiple phenotypes, including loss of aconitase activity, are consistent with copper-BPQ mediated damage to mitochondrial iron–sulphur clusters. Thus, a biochemical basis of copper-toxicity in S. cerevisiae is analogous to other organisms. Second, iron regulons controlled by Aft1/2, Cth2 and Yap5 that respond to mitochondrial iron–sulphur cluster status are modulated by copper-BPQ causing iron hyper-accumulation via upregulated iron-import. Comparison of copper-BPQ treated, untreated and copper-only treated wild-type and fra2Δ by RNA-seq has uncovered a new candidate Aft1 target-gene (LSO1) and paralogous non-target (LSO2), plus nine putative Cth2 target-transcripts. Two lines of evidence confirm that Fra2 dominates basal repression of the Aft1/2 regulons in iron-replete cultures. Fra2-independent control of these regulons is also observed but CTH2 itself appears to be atypically Fra2-dependent. However, control of Cth2-target transcripts which is independent of CTH2 transcript abundance or of Fra2, is also quantified. Use of copper-BPQ supports a substantial contribution of metabolite repression to iron-regulation.
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spelling pubmed-41497842014-09-17 A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae Foster, Andrew W Dainty, Samantha J Patterson, Carl J Pohl, Ehmke Blackburn, Hannah Wilson, Clare Hess, Corinna R Rutherford, Julian C Quaranta, Laura Corran, Andy Robinson, Nigel J Mol Microbiol Research Articles The extreme resistance of Saccharomyces cerevisiae to copper is overcome by 2-(6-benzyl-2-pyridyl)quinazoline (BPQ), providing a chemical-biology tool which has been exploited in two lines of discovery. First, BPQ is shown to form a red (BPQ)(2)Cu(I) complex and promote Ctr1-independent copper-accumulation in whole cells and in mitochondria isolated from treated cells. Multiple phenotypes, including loss of aconitase activity, are consistent with copper-BPQ mediated damage to mitochondrial iron–sulphur clusters. Thus, a biochemical basis of copper-toxicity in S. cerevisiae is analogous to other organisms. Second, iron regulons controlled by Aft1/2, Cth2 and Yap5 that respond to mitochondrial iron–sulphur cluster status are modulated by copper-BPQ causing iron hyper-accumulation via upregulated iron-import. Comparison of copper-BPQ treated, untreated and copper-only treated wild-type and fra2Δ by RNA-seq has uncovered a new candidate Aft1 target-gene (LSO1) and paralogous non-target (LSO2), plus nine putative Cth2 target-transcripts. Two lines of evidence confirm that Fra2 dominates basal repression of the Aft1/2 regulons in iron-replete cultures. Fra2-independent control of these regulons is also observed but CTH2 itself appears to be atypically Fra2-dependent. However, control of Cth2-target transcripts which is independent of CTH2 transcript abundance or of Fra2, is also quantified. Use of copper-BPQ supports a substantial contribution of metabolite repression to iron-regulation. Blackwell Publishing Ltd 2014-07 2014-06-15 /pmc/articles/PMC4149784/ /pubmed/24895027 http://dx.doi.org/10.1111/mmi.12661 Text en © 2014 The Authors. Molecular Microbiology published by John Wiley & Sons Ltd. http://creativecommons.org/licenses/by/3.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Foster, Andrew W
Dainty, Samantha J
Patterson, Carl J
Pohl, Ehmke
Blackburn, Hannah
Wilson, Clare
Hess, Corinna R
Rutherford, Julian C
Quaranta, Laura
Corran, Andy
Robinson, Nigel J
A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title_full A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title_fullStr A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title_full_unstemmed A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title_short A chemical potentiator of copper-accumulation used to investigate the iron-regulons of Saccharomyces cerevisiae
title_sort chemical potentiator of copper-accumulation used to investigate the iron-regulons of saccharomyces cerevisiae
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4149784/
https://www.ncbi.nlm.nih.gov/pubmed/24895027
http://dx.doi.org/10.1111/mmi.12661
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