Genome-wide association studies have shown that the majority of disease-associated genetic variants lie within non-coding regions of the human genome. Subsequently, a challenge following these discoveries is to identify how these variants modulate the risk of disease. Enhancers are non-coding regulatory elements that can be bound by proteins to activate the expression of a gene that may be linearly distant. Experimentally probing all possible enhancer–target gene pairs can be laborious. Hi-C, a technique developed by Job Dekker’s group in 2009, combines high-throughput sequencing with chromosome conformation capture to detect DNA interactions genome-wide and thereby reveals the three-dimensional architecture of chromatin in the nucleus. How...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
All somatic cells within an organism contain the same genetic material, yet they display pronounced ...
The mammalian genome harbors up to one million regulatory elements often located at great distances ...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
Enhancer elements are essential for tissue-specific gene regulation during mammalian development. Al...
The vast non-coding portion of the human genome is awash in functional elements and disease-causing ...
Transcriptional control in large genomes often requires looping interactions between distal DNA elem...
The vast non-coding portion of the human genome is full of functional elements and disease-causing r...
SummaryLong-range interactions between regulatory elements and gene promoters play key roles in tran...
Long-range interactions between regulatory elements and gene promoters play key roles in transcripti...
In specific cases, chromatin clearly forms long-range loops that place distant regulatory elements i...
Motivation: Genome-wide association studies (GWAS) aim to uncover the genetic basis of traits and co...
Long-range interactions between regulatory elements and gene promoters play key roles in transcripti...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
All somatic cells within an organism contain the same genetic material, yet they display pronounced ...
The mammalian genome harbors up to one million regulatory elements often located at great distances ...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
Genome-wide association studies have shown that the majority of disease-associated genetic variants ...
Enhancer elements are essential for tissue-specific gene regulation during mammalian development. Al...
The vast non-coding portion of the human genome is awash in functional elements and disease-causing ...
Transcriptional control in large genomes often requires looping interactions between distal DNA elem...
The vast non-coding portion of the human genome is full of functional elements and disease-causing r...
SummaryLong-range interactions between regulatory elements and gene promoters play key roles in tran...
Long-range interactions between regulatory elements and gene promoters play key roles in transcripti...
In specific cases, chromatin clearly forms long-range loops that place distant regulatory elements i...
Motivation: Genome-wide association studies (GWAS) aim to uncover the genetic basis of traits and co...
Long-range interactions between regulatory elements and gene promoters play key roles in transcripti...
Motivation: Looping is one of the mechanisms responsible of gene regulation in eukaryotes. It is kno...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
All somatic cells within an organism contain the same genetic material, yet they display pronounced ...
The mammalian genome harbors up to one million regulatory elements often located at great distances ...