DNA in eukaryotes is packaged into a chromatin complex, the most basic element of which is the nucleosome. The precise positioning of the nucleosome cores allows for selective access to the DNA, and the mechanisms that control this positioning are important pieces of the gene expression puzzle. We describe a large-scale nucleosome pattern that jointly characterizes the nucleosome core and the adjacent linkers and is predominantly characterized by long-range oscillations in the mono, di- and tri-nucleotide content of the DNA sequence, and we show that this pattern can be used to predict nucleosome positions in both Homo sapiens and Saccharomyces cerevisiae more accurately than previously published methods. Surprisingly, in both H. sapiens an...
AbstractThe basic unit of eukaryotic chromatin is the nucleosome, consisting of about 150 bp of DNA ...
Nucleosome positioning has important roles in key cellular processes. Although intensive efforts hav...
BACKGROUND: Recent advances in the field of high-throughput genomics have rendered possible the perf...
DNA in eukaryotes is packaged into a chromatin complex, the most basic element of which is the nucle...
Background: Nucleosomes are DNA-histone complex, each wrapping about 150 pairs of double-stranded DN...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
AbstractKnowledge of the detailed organization of nucleosomes across genomes and the mechanisms of n...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
The identification of important factors that affect nucleosome formation is critical to clarify nucl...
Abstract We developed a chemical cleavage method that releases single nucleosome dyad-containing fra...
The identification of important factors that affect nucleosome formation is critical to clarify nucl...
<div><p>Nucleosome positioning has important roles in key cellular processes. Although intensive eff...
The basic unit of eukaryotic chromatin is the nucleosome, consisting of about 150 by of DNA wrapped ...
Abstract Background The nucleosome is the fundamental packing unit of DNAs in eukaryotic cells. Its ...
AbstractThe basic unit of eukaryotic chromatin is the nucleosome, consisting of about 150 bp of DNA ...
Nucleosome positioning has important roles in key cellular processes. Although intensive efforts hav...
BACKGROUND: Recent advances in the field of high-throughput genomics have rendered possible the perf...
DNA in eukaryotes is packaged into a chromatin complex, the most basic element of which is the nucle...
Background: Nucleosomes are DNA-histone complex, each wrapping about 150 pairs of double-stranded DN...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
AbstractKnowledge of the detailed organization of nucleosomes across genomes and the mechanisms of n...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
The identification of important factors that affect nucleosome formation is critical to clarify nucl...
Abstract We developed a chemical cleavage method that releases single nucleosome dyad-containing fra...
The identification of important factors that affect nucleosome formation is critical to clarify nucl...
<div><p>Nucleosome positioning has important roles in key cellular processes. Although intensive eff...
The basic unit of eukaryotic chromatin is the nucleosome, consisting of about 150 by of DNA wrapped ...
Abstract Background The nucleosome is the fundamental packing unit of DNAs in eukaryotic cells. Its ...
AbstractThe basic unit of eukaryotic chromatin is the nucleosome, consisting of about 150 bp of DNA ...
Nucleosome positioning has important roles in key cellular processes. Although intensive efforts hav...
BACKGROUND: Recent advances in the field of high-throughput genomics have rendered possible the perf...