Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have important effects on fundamental biological processes, including chromosome condensation, replication, and transcription. Until recently, however, nuclear organization could only be analyzed microscopically. The development of chromatin conformation capture (3C)-based techniques now allows a detailed look at chromosomal architecture from the level of individual loci to the entire genome. Here we provide a robust Hi-C protocol, allowing the analysis of nuclear organization in nuclei from different wild-type and mutant plant tissues. This method is quantitative and provides a highly efficient and comprehensive way to study chromatin organizatio...
Genome regulation takes place at different hierarchically interconnected levels: the DNA sequence le...
The linker of nucleoskeleton and cytoskeleton (LINC) complex is an evolutionarily well-conserved pro...
Regulation of gene expression in eukaryotes involves many complex processes, in which chromatin stru...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
Higher-order chromatin structure undergoes striking changes in response to various developmental and...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
In recent years, we have witnessed a significant increase in studies addressing the three-dimensiona...
The nuclear space is a dynamic environment in which DNA molecules interact across time, space and sc...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
The three-dimensional packing of the genome plays an important role in regulating gene expression. W...
Gene regulation in higher eukaryotes frequently involves physical interactions between genomic seque...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
Gene regulation in higher eukaryotes frequently involves physical interactions between genomic seque...
Genome regulation takes place at different hierarchically interconnected levels: the DNA sequence le...
The linker of nucleoskeleton and cytoskeleton (LINC) complex is an evolutionarily well-conserved pro...
Regulation of gene expression in eukaryotes involves many complex processes, in which chromatin stru...
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have ...
Nuclear genome organization has recently received increasing attention due to its manifold functions...
Higher-order chromatin structure undergoes striking changes in response to various developmental and...
International audienceThe long linear chromosomes of eukaryotic organisms are tightly packed into th...
In recent years, we have witnessed a significant increase in studies addressing the three-dimensiona...
The nuclear space is a dynamic environment in which DNA molecules interact across time, space and sc...
International audienceThe three-dimensional organization of the eukaryotic nucleus and its chromosom...
The spatial arrangement of interphase chromosomes in the nucleus is important for gene expression an...
The three-dimensional packing of the genome plays an important role in regulating gene expression. W...
Gene regulation in higher eukaryotes frequently involves physical interactions between genomic seque...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
Gene regulation in higher eukaryotes frequently involves physical interactions between genomic seque...
Genome regulation takes place at different hierarchically interconnected levels: the DNA sequence le...
The linker of nucleoskeleton and cytoskeleton (LINC) complex is an evolutionarily well-conserved pro...
Regulation of gene expression in eukaryotes involves many complex processes, in which chromatin stru...