Nucleosome organization is critical for gene regulation1. In living cells this organization is determined by multiple factors, including the action of chromatin remodellers2, competition with site-specific DNA-binding proteins3, and the DNA sequence preferences of the nucleosomes themselves4-8. However, it has been difficult to estimate the relative importance of each of these mechanisms in vivo7,9-11, because in vivo nucleosome maps reflect the combined action of all influencing factors. Here we determine the importance of nucleosome DNA sequence preferences experimentally by measuring the genome-wide occupancy of nucleosomes assembled on purified yeast genomic DNA. The resulting map, in which nucleosome occupancy is governed only by the i...
Numerous chromatin remodeling enzymes position nucleosomes in eukaryotic cells. Aside from these fac...
[EN] Nucleosomes are the basic units of chromatin. They compact the genome inside the nucleus and r...
Packaging of genomic DNA into nucleosomes is nearly universally conserved in eukaryotes, and many fe...
Nucleosome organization is critical for gene regulation1. In living cells this organization is deter...
The genomes of all eukaryotic organisms are packaged into chromatin, the fundamental unit of which i...
Active eukaryotic regulatory sites are characterized by open chromatin, and yeast promoters and tran...
A conserved hallmark of eukaryotic chromatin architecture is the distinctive array of well-positione...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
ABSTRACT: Large-scale and genome-wide studies have concluded that ∼80% of the yeast (Saccharomyces c...
AbstractQuantitative understanding of the principles regulating nucleosome occupancy on a genome-wid...
Motivation: Although the nucleosome occupancy along a genome can be in part predicted by in vitro ex...
To gain a better understanding of the sequence patterns that characterize positioned nucleosomes, we...
In the yeast genome, a large proportion of nucleosomes occupy well-defined and stable positions. Whi...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
[EN] In the yeast genome, a large proportion of nucleosomes occupy well-defined and stable positions...
Numerous chromatin remodeling enzymes position nucleosomes in eukaryotic cells. Aside from these fac...
[EN] Nucleosomes are the basic units of chromatin. They compact the genome inside the nucleus and r...
Packaging of genomic DNA into nucleosomes is nearly universally conserved in eukaryotes, and many fe...
Nucleosome organization is critical for gene regulation1. In living cells this organization is deter...
The genomes of all eukaryotic organisms are packaged into chromatin, the fundamental unit of which i...
Active eukaryotic regulatory sites are characterized by open chromatin, and yeast promoters and tran...
A conserved hallmark of eukaryotic chromatin architecture is the distinctive array of well-positione...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
ABSTRACT: Large-scale and genome-wide studies have concluded that ∼80% of the yeast (Saccharomyces c...
AbstractQuantitative understanding of the principles regulating nucleosome occupancy on a genome-wid...
Motivation: Although the nucleosome occupancy along a genome can be in part predicted by in vitro ex...
To gain a better understanding of the sequence patterns that characterize positioned nucleosomes, we...
In the yeast genome, a large proportion of nucleosomes occupy well-defined and stable positions. Whi...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
[EN] In the yeast genome, a large proportion of nucleosomes occupy well-defined and stable positions...
Numerous chromatin remodeling enzymes position nucleosomes in eukaryotic cells. Aside from these fac...
[EN] Nucleosomes are the basic units of chromatin. They compact the genome inside the nucleus and r...
Packaging of genomic DNA into nucleosomes is nearly universally conserved in eukaryotes, and many fe...