Background: High-throughput sequencing Chromosome Conformation Capture (Hi-C) allows the study of DNA interactions and 3D chromosome folding at the genome-wide scale. Usually, these data are represented as matrices describing the binary contacts among the different chromosome regions. On the other hand, a graph-based representation can be advantageous to describe the complex topology achieved by the DNA in the nucleus of eukaryotic cells. Methods: Here we discuss the use of a graph database for storing and analysing data achieved by performing Hi-C experiments. The main issue is the size of the produced data and, working with a graph-based representation, the consequent necessity of adequately managing a large number of edges (contacts) con...
Chromosome conformation capture-based methods such as Hi-C have become mainstream techniques for the...
The High-throughput Chromosome Conformation Capture (Hi-C) technique combines the power of the Next ...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
Abstract: Background: High-throughput sequencing Chromosome Conformation Capture (Hi-C) allows the s...
<p>The three dimensional organization of the genome is emerging as a major determinant of gene regul...
Motivation: The relationship between gene co-expression and chromatin conformation is of great biolo...
The relationship between gene co-expression and chromatin conformation is of great biological intere...
Abstract Objectives Hi-C is a proximity-based ligation reaction used to detect regions of the genome...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
The 3D organization of eukaryotic chromosomes affects key processes such as gene expression, DNA rep...
The spatial conformation of a genome plays an important role in the long-range regulation of genome-...
While we often think of the genome as a linear object, in reality chromosomes are folded in a highly...
Abstract Chromosome conformation capture experiments such as Hi–C map the three-dimensional spatial ...
Abstract Background Hi-C sequencing offers novel, cost-effective means to study the spatial conforma...
Chromosome conformation capture-based methods such as Hi-C have become mainstream techniques for the...
The High-throughput Chromosome Conformation Capture (Hi-C) technique combines the power of the Next ...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...
Abstract: Background: High-throughput sequencing Chromosome Conformation Capture (Hi-C) allows the s...
<p>The three dimensional organization of the genome is emerging as a major determinant of gene regul...
Motivation: The relationship between gene co-expression and chromatin conformation is of great biolo...
The relationship between gene co-expression and chromatin conformation is of great biological intere...
Abstract Objectives Hi-C is a proximity-based ligation reaction used to detect regions of the genome...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
The three-dimensional organization of the genome plays a critical role in the regulation of gene exp...
The 3D organization of eukaryotic chromosomes affects key processes such as gene expression, DNA rep...
The spatial conformation of a genome plays an important role in the long-range regulation of genome-...
While we often think of the genome as a linear object, in reality chromosomes are folded in a highly...
Abstract Chromosome conformation capture experiments such as Hi–C map the three-dimensional spatial ...
Abstract Background Hi-C sequencing offers novel, cost-effective means to study the spatial conforma...
Chromosome conformation capture-based methods such as Hi-C have become mainstream techniques for the...
The High-throughput Chromosome Conformation Capture (Hi-C) technique combines the power of the Next ...
The chromatin organization in the 3D nuclear space is essential for genome functionality. This spati...