SummaryNucleosome positioning displays sequence dependency and contributes to genomic regulation in a site-specific manner. We solved the structures of nucleosome core particle composed of strong positioning TTTAA elements flanking the nucleosome center. The positioning strength of the super flexible TA dinucleotide is consistent with its observed central location within minor groove inward regions, where it can contribute maximally to energetically challenging minor groove bending, kinking and compression. The marked preference for TTTAA and positioning power of the site 1.5 double helix turns from the nucleosome center relates to a unique histone protein motif at this location, which enforces a sustained, extremely narrow minor groove via...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
SummaryNucleosome positioning displays sequence dependency and contributes to genomic regulation in ...
AbstractHere we propose a new determinant for localization of nucleosomes along genomic DNA, in addi...
AbstractNucleosome positioning has been studied on a strongly curved 268 by DNA fragment from a Crit...
In vivo nucleosomes often occupy well-defined preferred positions on genomic DNA. An important quest...
To gain a better understanding of the sequence patterns that characterize positioned nucleosomes, we...
A previous report demonstrated that one site in a nucleosome assembled onto a synthetic positioning ...
AbstractThe folding of DNA on the nucleosome core particle governs many fundamental issues in eukary...
The eukaryotic genome is packaged by wrapping ~147 bp units of DNA around histone octamers to form c...
Genomic nucleosome positions determine DNA accessibility to regulatory molecules, and thus modulate ...
Most eukaryotic DNA contained in the nucleus is packaged by wrapping DNA around histone octamers. Hi...
Chromatin organization and composition impart sophisticated regulatory features critical to eukaryot...
Chromatin organization and composition impart sophisticated regulatory features critical to eukaryot...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
SummaryNucleosome positioning displays sequence dependency and contributes to genomic regulation in ...
AbstractHere we propose a new determinant for localization of nucleosomes along genomic DNA, in addi...
AbstractNucleosome positioning has been studied on a strongly curved 268 by DNA fragment from a Crit...
In vivo nucleosomes often occupy well-defined preferred positions on genomic DNA. An important quest...
To gain a better understanding of the sequence patterns that characterize positioned nucleosomes, we...
A previous report demonstrated that one site in a nucleosome assembled onto a synthetic positioning ...
AbstractThe folding of DNA on the nucleosome core particle governs many fundamental issues in eukary...
The eukaryotic genome is packaged by wrapping ~147 bp units of DNA around histone octamers to form c...
Genomic nucleosome positions determine DNA accessibility to regulatory molecules, and thus modulate ...
Most eukaryotic DNA contained in the nucleus is packaged by wrapping DNA around histone octamers. Hi...
Chromatin organization and composition impart sophisticated regulatory features critical to eukaryot...
Chromatin organization and composition impart sophisticated regulatory features critical to eukaryot...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...