Motivation: High throughput chromatin conformation capture (3C) technologies, such as Hi-C and ChIA-PET, have the potential to elucidate the functional roles of non-coding variants. However, most of published genome-wide unbiased chromatin organization studies have used cultured cell lines, limiting their generalizability. Results: We developed a web browser, HUGIn, to visualize Hi-C data generated from 21 human primary tissues and cell lines. HUGIn enables assessment of chromatin contacts both constitutive across and specific to tissue(s) and/or cell line(s) at any genomic loci, including GWAS SNPs, eQTLs and cis-regulatory elements, facilitating the understanding of both GWAS and eQTL results and functional genomics data. Availability a...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Over 90% of disease-associated variants detected from Genome-wide Association Studies (GWAS) are in ...
Genome-wide chromatin conformation capture technologies such as Hi-C are commonly employed to study ...
Motivation: High throughput chromatin conformation capture (3C) technologies, such as Hi-C and ChIA-...
Chromosome conformation capture (3C), coupled with next-generation sequencing (Hi-C), provides a mea...
The intricate folding of chromatin enables living organisms to store genomic material in an extremel...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
The three-dimensional folding of chromosomes compartmentalizes the genome and and can bring distant ...
Characterizing chromatin interactions is a crucial step towards increasing our understanding of the ...
We introduce an R package and a web-based visualization tool for the representation, analysis and in...
Understanding 3D genome structure is crucial to learn how chromatin folds and how genes are regulate...
Eukaryotic genomes are highly organised within the nucleus of a cell, allowing widely dispersed regu...
Studying the 3D chromosomal organization is crucial to understanding processes of transcription, his...
The biological information of the organisms is stored in the DNA, which folds up into elaborate phys...
The chromatin is not randomly arranged into the nucleus. Instead, the nuclear organization is tightl...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Over 90% of disease-associated variants detected from Genome-wide Association Studies (GWAS) are in ...
Genome-wide chromatin conformation capture technologies such as Hi-C are commonly employed to study ...
Motivation: High throughput chromatin conformation capture (3C) technologies, such as Hi-C and ChIA-...
Chromosome conformation capture (3C), coupled with next-generation sequencing (Hi-C), provides a mea...
The intricate folding of chromatin enables living organisms to store genomic material in an extremel...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
The three-dimensional folding of chromosomes compartmentalizes the genome and and can bring distant ...
Characterizing chromatin interactions is a crucial step towards increasing our understanding of the ...
We introduce an R package and a web-based visualization tool for the representation, analysis and in...
Understanding 3D genome structure is crucial to learn how chromatin folds and how genes are regulate...
Eukaryotic genomes are highly organised within the nucleus of a cell, allowing widely dispersed regu...
Studying the 3D chromosomal organization is crucial to understanding processes of transcription, his...
The biological information of the organisms is stored in the DNA, which folds up into elaborate phys...
The chromatin is not randomly arranged into the nucleus. Instead, the nuclear organization is tightl...
The three-dimensional structure of the genome plays a key role in gene regulation. For example, whil...
Over 90% of disease-associated variants detected from Genome-wide Association Studies (GWAS) are in ...
Genome-wide chromatin conformation capture technologies such as Hi-C are commonly employed to study ...