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Effect of Sequence-Directed Nucleosome Disruption on Cell-Type-Specific Repression by α2/Mcm1 in the Yeast Genome

Nobuyuki Morohashi, Yuichi Yamamoto, Shunsuke Kuwana, Wataru Morita, Heisaburo Shindo, Aaron P. Mitchell, Mitsuhiro Shimizu
Nobuyuki Morohashi
1Department of Chemistry, Meisei University, Hino, Tokyo 191-8506, Japan
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Yuichi Yamamoto
1Department of Chemistry, Meisei University, Hino, Tokyo 191-8506, Japan
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Shunsuke Kuwana
1Department of Chemistry, Meisei University, Hino, Tokyo 191-8506, Japan
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Wataru Morita
1Department of Chemistry, Meisei University, Hino, Tokyo 191-8506, Japan
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Heisaburo Shindo
2School of Pharmacy, Tokyo University of Pharmacy and Life Science, Hachioji, Tokyo 192-0392, Japan
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Aaron P. Mitchell
3Department of Microbiology, Columbia University, New York, New York 10032
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Mitsuhiro Shimizu
1Department of Chemistry, Meisei University, Hino, Tokyo 191-8506, Japan
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  • For correspondence: shimizum@chem.meisei-u.ac.jp
DOI: 10.1128/EC.00105-06
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ABSTRACT

In Saccharomyces cerevisiae, a-cell-specific genes are repressed in MATα cells by α2/Mcm1, acting in concert with the Ssn6-Tup1 corepressors and the Isw2 chromatin remodeling complex, and nucleosome positioning has been proposed as one mechanism of repression. However, prior studies showed that nucleosome positioning is not essential for repression by α2/Mcm1 in artificial reporter plasmids, and the importance of the nucleosome positioning remains questionable. We have tested the function of positioned nucleosomes through alteration of genomic chromatin at the a-cell-specific gene BAR1. We report here that a positioned nucleosome in the BAR1 promoter is disrupted in cis by the insertion of diverse DNA sequences such as poly(dA) · poly(dT) and poly(dC-dG) · poly(dC-dG), leading to inappropriate partial derepression of BAR1. Also, we show that isw2 mutation causes loss of nucleosome positioning in BAR1 in MATα cells as well as partial disruption of repression. Thus, nucleosome positioning is required for full repression, but loss of nucleosome positioning is not sufficient to relieve repression completely. Even though disruption of nucleosome positioning by the cis- and trans-acting modulators of chromatin has a modest effect on the level of transcription, it causes significant degradation of the α-mating pheromone in MATα cells, thereby affecting its cell type identity. Our results illustrate a useful paradigm for analysis of chromatin structural effects at genomic loci.

  • Copyright © 2006 American Society for Microbiology
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Effect of Sequence-Directed Nucleosome Disruption on Cell-Type-Specific Repression by α2/Mcm1 in the Yeast Genome
Nobuyuki Morohashi, Yuichi Yamamoto, Shunsuke Kuwana, Wataru Morita, Heisaburo Shindo, Aaron P. Mitchell, Mitsuhiro Shimizu
Eukaryotic Cell Nov 2006, 5 (11) 1925-1933; DOI: 10.1128/EC.00105-06

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Effect of Sequence-Directed Nucleosome Disruption on Cell-Type-Specific Repression by α2/Mcm1 in the Yeast Genome
Nobuyuki Morohashi, Yuichi Yamamoto, Shunsuke Kuwana, Wataru Morita, Heisaburo Shindo, Aaron P. Mitchell, Mitsuhiro Shimizu
Eukaryotic Cell Nov 2006, 5 (11) 1925-1933; DOI: 10.1128/EC.00105-06
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KEYWORDS

Base Sequence
Gene Expression Regulation, Fungal
Genome, Fungal
Nucleosomes
Repressor Proteins
Saccharomyces cerevisiae
Saccharomyces cerevisiae Proteins
Transcription Factors

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