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García Molinero, Varinia; García Martínez, José; Reja, Rohit; Furió‑Tarí, Pedro; Antúnez Temporal, Oreto; Vinayachandran, Vinesh; Conesa, Ana; Pugh, B. Franklin; Pérez Ortín, José Enrique
Perfil; Rodríguez Navarro, Susana
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This document is a artículoDate2018
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Este documento está disponible también en :
http://hdl.handle.net/10550/65592
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Background Eukaryotic transcription is regulated through two complexes, the general transcription factor IID (TFIID) and the coactivator Spt-Ada-Gcn5 acetyltransferase (SAGA). Recent findings confirm that both TFIID and SAGA contribute to the synthesis of nearly all transcripts and are recruited genome-wide in yeast. However, how this broad recruitment confers selectivity under specific conditions remains an open question. Results Here we find that the SAGA/TREX-2 subunit Sus1 associates with upstream regulatory regions of many yeast genes and that heat shock drastically changes Sus1 binding. While Sus1 binding to TFIID-dominated genes is not affected by temperature, its recruitment to SAGA-dominated genes and RP genes is significantly disturbed under heat shock, with Sus1 relocated to environmental stress-responsive genes in these conditions. Moreover, in contrast to recent results showing that SAGA deubiquitinating enzyme Ubp8 is dispensable for RNA synthesis, genomic run-on experiments demonstrate that Sus1 contributes to synthesis and stability of a wide range of transcripts. Conclusions Our study provides support for a model in which SAGA/TREX-2 factor Sus1 acts as a global transcriptional regulator in yeast but has differential activity at yeast genes as a function of their transcription rate or during stress conditions.
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García Molinero, Varinia García Martínez, José Reja, Rohit Furió‑Tarí, Pedro Antúnez Temporal, Oreto Vinayachandran, Vinesh Conesa, Ana Pugh, B. Franklin Pérez Ortín, José Enrique Rodríguez Navarro, Susana 2018 The SAGA/TREX‑2 subunit Sus1 binds widely to transcribed genes and affects mRNA turnover globally Epigenetics & Chromatin 11 13 1 12 |
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https://doi.org/10.1186/s13072-018-0184-2
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