Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms

Nucleosomes, the basic units of chromatin structure, repress transcription by restricting access of transcription factors to promoter cis-regulatory elements. It has recently become clearly evident that nucleosomes are highly dynamic and that there is, especially in yeast, a constant histone turnove...

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Main Authors: Sanja Musladin, Slobodan Barbarić
Format: Article
Language:English
Published: University of Zagreb 2010-01-01
Series:Food Technology and Biotechnology
Subjects:
Online Access:http://hrcak.srce.hr/file/87214
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spelling doaj-a76f2b2d5fd944feb215dd0a7b5ff1c12020-11-25T02:29:02ZengUniversity of ZagrebFood Technology and Biotechnology1330-98621334-26062010-01-01483308316Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling MechanismsSanja Musladin0Slobodan Barbarić1Laboratory of Biochemistry, Faculty of Food Technology and Biotechnology, University of Zagreb, HR-10000 Zagreb, CroatiaLaboratory of Biochemistry, Faculty of Food Technology and Biotechnology, University of Zagreb, HR-10000 Zagreb, CroatiaNucleosomes, the basic units of chromatin structure, repress transcription by restricting access of transcription factors to promoter cis-regulatory elements. It has recently become clearly evident that nucleosomes are highly dynamic and that there is, especially in yeast, a constant histone turnover mediated by a variety of chromatin-modifying and -remodelling multiprotein complexes. The yeast PHO5 promoter has been a very useful model in elucidating the relationship between chromatin structure remodelling and gene regulation, showing that chromatin remodelling is replication-independent and is not a consequence of, but a prerequisite for the gene transcription. Also, chromatin remodelling at the PHO5 promoter was the first in vivo demonstrated example of histone eviction in trans, a mechanism that operates also at the two other coregulated PHO promoters, PHO8 and PHO84, and has recently been revealed to occur genome-wide. Despite the fact that chromatin remodelling at all three promoters eventually leads to nucleosome disassembly, they show differential cofactor requirements. At the PHO5 promoter, an essential chromatin factor has not been identified yet and there is a redundancy of remodelling pathways involved. On the contrary, remodelling of the PHO8 nucleosomes is critically dependent on Snf2, but still another remodeller is involved as well. Interestingly, the two neighbouring nucleosomes at the PHO84 promoter demonstrate different stringency of remodeller dependency. Parallel in vitro studies of nucleosome stability and in vivo studies of cofactor requirements for their remodelling have shown that differential stringency of chromatin cofactor requirements is, at least to a large degree, determined by different intrinsic stabilities of individual promoter nucleosomes. As an already well characterized and established model system, the PHO promoters are a favourable system for parallel studies of remodelling events in vivo and mechanism of chromatin remodelling in vitro, which are of essential importance for our further understanding of the mechanisms of chromatin remodelling.http://hrcak.srce.hr/file/87214transcriptional regulationchromatin remodellingyeast PHO genes
collection DOAJ
language English
format Article
sources DOAJ
author Sanja Musladin
Slobodan Barbarić
spellingShingle Sanja Musladin
Slobodan Barbarić
Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
Food Technology and Biotechnology
transcriptional regulation
chromatin remodelling
yeast PHO genes
author_facet Sanja Musladin
Slobodan Barbarić
author_sort Sanja Musladin
title Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
title_short Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
title_full Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
title_fullStr Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
title_full_unstemmed Yeast PHO Genes: An Excellent Model for Elucidation of Chromatin-Remodelling Mechanisms
title_sort yeast pho genes: an excellent model for elucidation of chromatin-remodelling mechanisms
publisher University of Zagreb
series Food Technology and Biotechnology
issn 1330-9862
1334-2606
publishDate 2010-01-01
description Nucleosomes, the basic units of chromatin structure, repress transcription by restricting access of transcription factors to promoter cis-regulatory elements. It has recently become clearly evident that nucleosomes are highly dynamic and that there is, especially in yeast, a constant histone turnover mediated by a variety of chromatin-modifying and -remodelling multiprotein complexes. The yeast PHO5 promoter has been a very useful model in elucidating the relationship between chromatin structure remodelling and gene regulation, showing that chromatin remodelling is replication-independent and is not a consequence of, but a prerequisite for the gene transcription. Also, chromatin remodelling at the PHO5 promoter was the first in vivo demonstrated example of histone eviction in trans, a mechanism that operates also at the two other coregulated PHO promoters, PHO8 and PHO84, and has recently been revealed to occur genome-wide. Despite the fact that chromatin remodelling at all three promoters eventually leads to nucleosome disassembly, they show differential cofactor requirements. At the PHO5 promoter, an essential chromatin factor has not been identified yet and there is a redundancy of remodelling pathways involved. On the contrary, remodelling of the PHO8 nucleosomes is critically dependent on Snf2, but still another remodeller is involved as well. Interestingly, the two neighbouring nucleosomes at the PHO84 promoter demonstrate different stringency of remodeller dependency. Parallel in vitro studies of nucleosome stability and in vivo studies of cofactor requirements for their remodelling have shown that differential stringency of chromatin cofactor requirements is, at least to a large degree, determined by different intrinsic stabilities of individual promoter nucleosomes. As an already well characterized and established model system, the PHO promoters are a favourable system for parallel studies of remodelling events in vivo and mechanism of chromatin remodelling in vitro, which are of essential importance for our further understanding of the mechanisms of chromatin remodelling.
topic transcriptional regulation
chromatin remodelling
yeast PHO genes
url http://hrcak.srce.hr/file/87214
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