<div><p>Nucleosomes are important for gene regulation because their arrangement on the genome can control which proteins bind to DNA. Currently, few human nucleosomes are thought to be consistently positioned across cells; however, this has been difficult to assess due to the limited resolution of existing data. We performed paired-end sequencing of micrococcal nuclease-digested chromatin (MNase–seq) from seven lymphoblastoid cell lines and mapped over 3.6 billion MNase–seq fragments to the human genome to create the highest-resolution map of nucleosome occupancy to date in a human cell type. In contrast to previous results, we find that most nucleosomes have more consistent positioning than expected by chance and a substantial fraction (8....
It has been some 40 years since repeating subunits in eukaryotic chromatin, initially termed nu bod...
<div><p>The fundamental repeating unit of eukaryotic chromatin is the nucleosome. Besides being invo...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
EukaryoticDNAis wrapped around nucleosomes, the packaging units of chromatin, and this architecture ...
Nucleosomes are the basic packaging units of chromatin, modulating accessibility of regulatory prote...
SummaryThe positioning of nucleosomes with respect to DNA plays an important role in regulating tran...
Background: Recently, a physical model of nucleosome formation based on sequence-dependent bending p...
Background: Recently, a physical model of nucleosome formation based on sequence-dependent bending p...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
The positioning of nucleosomes with respect to DNA plays an important role in regulating transcripti...
Nucleosome occupancy plays a key role in regulating access to eukaryotic genomes. Although various c...
AbstractPackaging of eukaryotic genomes into chromatin affects every process that occurs on DNA. The...
It has been some 40 years since repeating subunits in eukaryotic chromatin, initially termed nu bod...
<div><p>The fundamental repeating unit of eukaryotic chromatin is the nucleosome. Besides being invo...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
EukaryoticDNAis wrapped around nucleosomes, the packaging units of chromatin, and this architecture ...
Nucleosomes are the basic packaging units of chromatin, modulating accessibility of regulatory prote...
SummaryThe positioning of nucleosomes with respect to DNA plays an important role in regulating tran...
Background: Recently, a physical model of nucleosome formation based on sequence-dependent bending p...
Background: Recently, a physical model of nucleosome formation based on sequence-dependent bending p...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
The positioning of nucleosomes with respect to DNA plays an important role in regulating transcripti...
Nucleosome occupancy plays a key role in regulating access to eukaryotic genomes. Although various c...
AbstractPackaging of eukaryotic genomes into chromatin affects every process that occurs on DNA. The...
It has been some 40 years since repeating subunits in eukaryotic chromatin, initially termed nu bod...
<div><p>The fundamental repeating unit of eukaryotic chromatin is the nucleosome. Besides being invo...
Two recent studies mapped nucleosomes across the yeast and human genomes, teasing apart the relative...