International audienceRecent progresses of genome-wide chromatin conformation capture techniques have shown that the genome is segmented into hierarchically organized spatial compartments. However, whether this non-random 3D organization only reflects or indeed contributes-and how-to the regulation of genome function remain to be elucidated. The observation in many species that 3D domains correlate strongly with the 1D epigenomic information along the genome suggests a dynamic coupling between chromatin organization and epigenetic regulation. Here, we posit that chromosome folding may contribute to the maintenance of a robust epigenomic identity via the formation of spatial compartments like topologically-associating domains. Using a novel ...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
Recent technological advances have allowed us to map chromatin conformation and uncover the genome’s...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
Recent technological advances have allowed us to map chromatin conformation and uncover the genome’s...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceRecent progresses of genome-wide chromatin conformation capture techniques hav...
International audienceGenomes of eukaryotes are partitioned into domains of functionally distinct ch...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
Genomes of eukaryotes are partitioned into domains of functionally distinct chromatin states. These ...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
DNA of eukaryotes is highly condensed in a nucleoprotein complex called chromatin. Both the spatial...
Recent technological advances have allowed us to map chromatin conformation and uncover the genome’s...