AbstractEukaryotic genomes are organized hierarchically into chromatin structures by histones. Despite extensive research for over 30years, not only the fundamental structure of the 30-nm chromatin fiber is being debated, but the actual existence of such fiber remains hotly contested. In this review, we focus on the most recent progress in elucidating the structure of the 30-nm fiber upon in vitro reconstitution, and its possible organization inside the nucleus. In addition, we discuss the roles of linker histone H1 as well as the importance of specific nucleosome-nucleosome interactions in the formation of the 30-nm fiber. Finally, we discuss the involvement of structural variations and epigenetic mechanisms available for the regulation of...
Chromatin molecules have properties that set them aside from all other biomacromolecules in the cell...
AbstractWe present a Monte Carlo model for genome folding at the 30-nm scale with focus on linker-hi...
AbstractIt is now widely recognized that the packaging of genomic DNA, together with core histones, ...
AbstractEukaryotic genomes are organized hierarchically into chromatin structures by histones. Despi...
AbstractIn addition to being the gateway for all access to the eukaryotic genome, chromatin has in r...
Graduation date: 1993Understanding the structure of the 30 nm fiber in chromatin is relevant to unde...
In eukaryotic cells, genomic DNA is highly packaged into chromatin to fit inside the nucleus. The ac...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
AbstractDespite more than 20 years of research, the structure of the chromatin fiber and its molecul...
ABSTRACT In addition to being the gateway for all access to the eukaryotic genome, chromatin has in ...
AbstractWe present an analysis of chromatin fiber structure across the human genome. Compact and ope...
AbstractA major question in chromatin involves the exact organization of nucleosomes within the 30-n...
In the eukaryotic nucleus, an immense length of DNA is compactly packaged to generate an ordered thr...
AbstractChromatin conformation is dynamic and heterogeneous with respect to nucleosome positions, wh...
Chromatin molecules have properties that set them aside from all other biomacromolecules in the cell...
AbstractWe present a Monte Carlo model for genome folding at the 30-nm scale with focus on linker-hi...
AbstractIt is now widely recognized that the packaging of genomic DNA, together with core histones, ...
AbstractEukaryotic genomes are organized hierarchically into chromatin structures by histones. Despi...
AbstractIn addition to being the gateway for all access to the eukaryotic genome, chromatin has in r...
Graduation date: 1993Understanding the structure of the 30 nm fiber in chromatin is relevant to unde...
In eukaryotic cells, genomic DNA is highly packaged into chromatin to fit inside the nucleus. The ac...
DNA in eukaryotic cell nuclei is packaged in a highly compact, yet dynamic chromatin structure that ...
SummaryNucleosomes help structure chromosomes by compacting DNA into fibers. To gain insight into ho...
AbstractDespite more than 20 years of research, the structure of the chromatin fiber and its molecul...
ABSTRACT In addition to being the gateway for all access to the eukaryotic genome, chromatin has in ...
AbstractWe present an analysis of chromatin fiber structure across the human genome. Compact and ope...
AbstractA major question in chromatin involves the exact organization of nucleosomes within the 30-n...
In the eukaryotic nucleus, an immense length of DNA is compactly packaged to generate an ordered thr...
AbstractChromatin conformation is dynamic and heterogeneous with respect to nucleosome positions, wh...
Chromatin molecules have properties that set them aside from all other biomacromolecules in the cell...
AbstractWe present a Monte Carlo model for genome folding at the 30-nm scale with focus on linker-hi...
AbstractIt is now widely recognized that the packaging of genomic DNA, together with core histones, ...