How DNA is organized in three dimensions inside the cell nucleus and how this affects the ways in which cells access, read and interpret genetic information are among the longest standing questions in cell biology. Using newly developed molecular, genomic and computational approaches based on the chromosome conformation capture technology (such as 3C, 4C, 5C and Hi-C), the spatial organization of genomes is being explored at unprecedented resolution. Interpreting the increasingly large chromatin interaction data sets is now posing novel challenges. Here we describe several types of statistical and computational approaches that have recently been developed to analyse chromatin interaction data
The way that chromatin is organized in three-dimensional nuclear space is now acknowledged as a fact...
The spatial conformation of a genome plays an important role in the long-range regulation of genome-...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
In all organisms, chromatin is packed to fulfil structural constraints and functional requirements. ...
The study of chromosome, and genome, organization is a both an ongoing challenge, and one with a lon...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
DNA inside the nuclei of cells is folded into an intricate three-dimensional (3D) structure that inf...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin is the complex of genomic DNA and proteins that fills the nucleus of eukaryotic cells. The...
AbstractChromosomes are large polymer molecules composed of nucleotides. In some species, such as hu...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
2012-05-30The genetic information in most organisms is stored in a double-helical fiber molecule kno...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
Abstract It is well known that the chromosomes are organized in the nucleus and this spatial arrange...
The way that chromatin is organized in three-dimensional nuclear space is now acknowledged as a fact...
The spatial conformation of a genome plays an important role in the long-range regulation of genome-...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...
In all organisms, chromatin is packed to fulfil structural constraints and functional requirements. ...
The study of chromosome, and genome, organization is a both an ongoing challenge, and one with a lon...
Three-dimensional organization of the chromatin has important roles in transcription, replication, D...
DNA inside the nuclei of cells is folded into an intricate three-dimensional (3D) structure that inf...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Chromatin is the complex of genomic DNA and proteins that fills the nucleus of eukaryotic cells. The...
AbstractChromosomes are large polymer molecules composed of nucleotides. In some species, such as hu...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
2012-05-30The genetic information in most organisms is stored in a double-helical fiber molecule kno...
Conformation capture technologies (e.g., Hi-C) chart physical interactions between chromatin regions...
Abstract It is well known that the chromosomes are organized in the nucleus and this spatial arrange...
The way that chromatin is organized in three-dimensional nuclear space is now acknowledged as a fact...
The spatial conformation of a genome plays an important role in the long-range regulation of genome-...
Recent sequence-based profiling technologies such as high-throughput sequencing to detect fragment n...