Large topologically associated domains (TADs) contain irregularly spaced nucleosome clutches, and interactions between such clutches are thought to aid the compaction of these domains. Here, we reconstituted TAD-sized chromatin fibers containing hundreds of nucleosomes on native source human and lambda-phage DNA and compared their mechanical properties at the single-molecule level with shorter '601' arrays with various nucleosome repeat lengths. Fluorescent imaging showed increased compaction upon saturation of the DNA with histones and increasing magnesium concentration. Nucleosome clusters and their structural fluctuations were visualized in confined nanochannels. Force spectroscopy revealed not only similar mechanical properties of the T...
Magnetic tweezers were used to study the mechanical response under torsion of single nucleosome arra...
The packaging of eukaryotic DNA into chromatin sterically occludes polymerases, recombinases and rep...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
AbstractNucleosomal arrays fold into chromatin fibers and the higher-order folding of chromatin play...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
The eukaryotic genome is highly compacted into a protein-DNA complex called chromatin. The cell cont...
The eukaryotic genome is highly compacted into a protein-DNA complex called chromatin. The cell cont...
Torsional stress generated during DNA replication and transcription has been suggested to facilitate...
AbstractThe hierarchical packaging of DNA into chromatin within a eukaryotic nucleus plays a pivotal...
International audienceAbout a decade ago, the elastic properties of a single chromatin fiber and, su...
To gain insight into the conformational properties and compaction of megabase-long chromatin molecul...
To gain insight into the conformational properties and compaction of megabase-long chromatin molecul...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
AbstractThe hierarchical packaging of DNA into chromatin within a eukaryotic nucleus plays a pivotal...
Remarkably, a long eukaryotic genome, a few meters in length, is tightly packed in the array of nucl...
Magnetic tweezers were used to study the mechanical response under torsion of single nucleosome arra...
The packaging of eukaryotic DNA into chromatin sterically occludes polymerases, recombinases and rep...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
AbstractNucleosomal arrays fold into chromatin fibers and the higher-order folding of chromatin play...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
The eukaryotic genome is highly compacted into a protein-DNA complex called chromatin. The cell cont...
The eukaryotic genome is highly compacted into a protein-DNA complex called chromatin. The cell cont...
Torsional stress generated during DNA replication and transcription has been suggested to facilitate...
AbstractThe hierarchical packaging of DNA into chromatin within a eukaryotic nucleus plays a pivotal...
International audienceAbout a decade ago, the elastic properties of a single chromatin fiber and, su...
To gain insight into the conformational properties and compaction of megabase-long chromatin molecul...
To gain insight into the conformational properties and compaction of megabase-long chromatin molecul...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
AbstractThe hierarchical packaging of DNA into chromatin within a eukaryotic nucleus plays a pivotal...
Remarkably, a long eukaryotic genome, a few meters in length, is tightly packed in the array of nucl...
Magnetic tweezers were used to study the mechanical response under torsion of single nucleosome arra...
The packaging of eukaryotic DNA into chromatin sterically occludes polymerases, recombinases and rep...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...