Cargando…

The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene

We demonstrate that the yeast flocculation gene, FLO1, is representative of a distinct subset of subtelomeric genes that are robustly repressed by the Cyc8–Tup1 complex. We have examined Cyc8–Tup1 localisation, histone acetylation and long-range chromatin remodelling within the extensive FLO1 upstre...

Descripción completa

Detalles Bibliográficos
Autores principales: Fleming, Alastair B., Beggs, Suzanne, Church, Michael, Tsukihashi, Yoshihiro, Pennings, Sari
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4316177/
https://www.ncbi.nlm.nih.gov/pubmed/25106892
http://dx.doi.org/10.1016/j.bbagrm.2014.07.022
_version_ 1782355545721667584
author Fleming, Alastair B.
Beggs, Suzanne
Church, Michael
Tsukihashi, Yoshihiro
Pennings, Sari
author_facet Fleming, Alastair B.
Beggs, Suzanne
Church, Michael
Tsukihashi, Yoshihiro
Pennings, Sari
author_sort Fleming, Alastair B.
collection PubMed
description We demonstrate that the yeast flocculation gene, FLO1, is representative of a distinct subset of subtelomeric genes that are robustly repressed by the Cyc8–Tup1 complex. We have examined Cyc8–Tup1 localisation, histone acetylation and long-range chromatin remodelling within the extensive FLO1 upstream region. We show that Cyc8–Tup1 is localised in a DNase I hypersensitive site within an ordered array of strongly positioned nucleosomes around − 700 base pairs upstream of the transcription start site. In cyc8 deletion mutant strains, Tup1p localisation is absent, with concomitant histone hyperacetylation of adjacent regions at the FLO1 promoter. This is accompanied by extensive histone depletion across the upstream region and gene activation. The yeast histone deacetylases, Hda1p and Rpd3p, occupy the repressed FLO1 promoter region in a Cyc8–Tup1 dependent manner and coordinate histone deacetylation, nucleosome stabilisation and gene repression. Moreover, we show that the ATP-dependent chromatin remodelling complex Swi–Snf occupies the site vacated by Cyc8–Tup1 in a cyc8 mutant. These data suggest that distinctly bound Cyc8–Tup1 cooperates with Hda1p and Rpd3p to establish or maintain an extensive array of strongly positioned, deacetylated nucleosomes over the FLO1 promoter and upstream region which inhibit histone acetylation, block Swi–Snf binding and prevent transcription.
format Online
Article
Text
id pubmed-4316177
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-43161772015-02-14 The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene Fleming, Alastair B. Beggs, Suzanne Church, Michael Tsukihashi, Yoshihiro Pennings, Sari Biochim Biophys Acta Gene Regul Mech Article We demonstrate that the yeast flocculation gene, FLO1, is representative of a distinct subset of subtelomeric genes that are robustly repressed by the Cyc8–Tup1 complex. We have examined Cyc8–Tup1 localisation, histone acetylation and long-range chromatin remodelling within the extensive FLO1 upstream region. We show that Cyc8–Tup1 is localised in a DNase I hypersensitive site within an ordered array of strongly positioned nucleosomes around − 700 base pairs upstream of the transcription start site. In cyc8 deletion mutant strains, Tup1p localisation is absent, with concomitant histone hyperacetylation of adjacent regions at the FLO1 promoter. This is accompanied by extensive histone depletion across the upstream region and gene activation. The yeast histone deacetylases, Hda1p and Rpd3p, occupy the repressed FLO1 promoter region in a Cyc8–Tup1 dependent manner and coordinate histone deacetylation, nucleosome stabilisation and gene repression. Moreover, we show that the ATP-dependent chromatin remodelling complex Swi–Snf occupies the site vacated by Cyc8–Tup1 in a cyc8 mutant. These data suggest that distinctly bound Cyc8–Tup1 cooperates with Hda1p and Rpd3p to establish or maintain an extensive array of strongly positioned, deacetylated nucleosomes over the FLO1 promoter and upstream region which inhibit histone acetylation, block Swi–Snf binding and prevent transcription. Elsevier 2014-11 /pmc/articles/PMC4316177/ /pubmed/25106892 http://dx.doi.org/10.1016/j.bbagrm.2014.07.022 Text en © 2014 The Authors. Published by Elsevier B.V. https://creativecommons.org/licenses/by/3.0/This work is licensed under a Creative Commons Attribution 3.0 Unported License (https://creativecommons.org/licenses/by/3.0/) .
spellingShingle Article
Fleming, Alastair B.
Beggs, Suzanne
Church, Michael
Tsukihashi, Yoshihiro
Pennings, Sari
The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title_full The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title_fullStr The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title_full_unstemmed The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title_short The yeast Cyc8–Tup1 complex cooperates with Hda1p and Rpd3p histone deacetylases to robustly repress transcription of the subtelomeric FLO1 gene
title_sort yeast cyc8–tup1 complex cooperates with hda1p and rpd3p histone deacetylases to robustly repress transcription of the subtelomeric flo1 gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4316177/
https://www.ncbi.nlm.nih.gov/pubmed/25106892
http://dx.doi.org/10.1016/j.bbagrm.2014.07.022
work_keys_str_mv AT flemingalastairb theyeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT beggssuzanne theyeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT churchmichael theyeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT tsukihashiyoshihiro theyeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT penningssari theyeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT flemingalastairb yeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT beggssuzanne yeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT churchmichael yeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT tsukihashiyoshihiro yeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene
AT penningssari yeastcyc8tup1complexcooperateswithhda1pandrpd3phistonedeacetylasestorobustlyrepresstranscriptionofthesubtelomericflo1gene