AbstractThe folding of DNA on the nucleosome core particle governs many fundamental issues in eukaryotic molecular biology. In this study, an updated set of sequence-dependent empirical “energy” functions, derived from the structures of other protein-bound DNA molecules, is used to investigate the extent to which the architecture of nucleosomal DNA is dictated by its underlying sequence. The potentials are used to estimate the cost of deforming a collection of sequences known to bind or resist uptake in nucleosomes along various left-handed superhelical pathways and to deduce the features of sequence contributing to a particular structural form. The deformation scores reflect the choice of template, the deviations of structural parameters a...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractHere we propose a new determinant for localization of nucleosomes along genomic DNA, in addi...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
AbstractThe folding of DNA on the nucleosome core particle governs many fundamental issues in eukary...
How eukaryotic genomes encode the folding of DNA into nucleosomes and how this intrinsic organizatio...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
The nucleosome particle is an essential biological macromolecule serving both a structural and gene ...
Most eukaryotic DNA contained in the nucleus is packaged by wrapping DNA around histone octamers. Hi...
The nucleosome particle is an essential biological macromolecule serving both a structural and gene ...
Chromatin is a complex of DNA and histone proteins that constitutes the elemental material of eukar...
This thesis presents a broad study of the chromatin structure and function with special focus in the...
SummaryNucleosome positioning displays sequence dependency and contributes to genomic regulation in ...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractHere we propose a new determinant for localization of nucleosomes along genomic DNA, in addi...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...
AbstractThe folding of DNA on the nucleosome core particle governs many fundamental issues in eukary...
How eukaryotic genomes encode the folding of DNA into nucleosomes and how this intrinsic organizatio...
Nucleosomes, the fundamental repeating subunits of all eukaryotic chromatin, are responsible for pac...
Eukaryotes must pack their DNA into the nucleus tightly, yet accessibly. To accomplish this, the nuc...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
Packaging of DNA into chromatin regulates DNA accessibility and consequently all DNA-dependent proce...
The nucleosome particle is an essential biological macromolecule serving both a structural and gene ...
Most eukaryotic DNA contained in the nucleus is packaged by wrapping DNA around histone octamers. Hi...
The nucleosome particle is an essential biological macromolecule serving both a structural and gene ...
Chromatin is a complex of DNA and histone proteins that constitutes the elemental material of eukar...
This thesis presents a broad study of the chromatin structure and function with special focus in the...
SummaryNucleosome positioning displays sequence dependency and contributes to genomic regulation in ...
AbstractBackground: The closed circular, multinucleosome-bound DNA comprising a minichromosome provi...
AbstractHere we propose a new determinant for localization of nucleosomes along genomic DNA, in addi...
Nucleosome is the fundamental building block of eukaryotic chromatin. The precise location of nucleo...