Multiple regulatory elements distant from their targets on the linear genome can influence the expression of a single gene through chromatin looping. Chromosome conformation capture implemented in Hi-C allows for genome-wide agnostic characterization of chromatin contacts. However, detection of functional enhancer-promoter interactions is precluded by its effective resolution that is determined by both restriction fragmentation and sensitivity of the experiment. Here we develop a capture Hi-C (cHi-C) approach to allow an agnostic characterization of these physical interactions on a genome-wide scale. Single-nucleotide polymorphisms associated with complex diseases often reside within regulatory elements and exert effects through long-range ...
Background: Genome-wide association studies have identified 196 high confidence independent signals ...
This dissertation deals with the analysis of high-throughput chromatin conformation capture (Hi-C) d...
While we often think of the genome as a linear object, in reality chromosomes are folded in a highly...
Multiple regulatory elements distant from their targets on the linear genome can influence the expre...
Transcriptional control in large genomes often requires looping interactions between distal DNA elem...
Genome wide association studies have discovered approximately 200 breast cancer risk single nucleoti...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
Chromosome conformation capture (3C), coupled with next-generation sequencing (Hi-C), provides a mea...
Chromosome conformation capture methodologies have provided insight into the effect of 3D genomic ar...
The ability to identify regulatory interactions that mediate gene expression changes through distal ...
Background: Significant efforts have recently been put into the investigation of the spatial organiz...
Background: Significant efforts have recently been put into the investigation of the spatial organiz...
Gene expression during development and differentiation is regulated in a cell- and stage-specific ma...
We describe a method, Hi-C, to comprehensively detect chromatin interactions in the mammalian nucleu...
BACKGROUND: Genome-wide association studies have identified 196 high confidence independent signals ...
Background: Genome-wide association studies have identified 196 high confidence independent signals ...
This dissertation deals with the analysis of high-throughput chromatin conformation capture (Hi-C) d...
While we often think of the genome as a linear object, in reality chromosomes are folded in a highly...
Multiple regulatory elements distant from their targets on the linear genome can influence the expre...
Transcriptional control in large genomes often requires looping interactions between distal DNA elem...
Genome wide association studies have discovered approximately 200 breast cancer risk single nucleoti...
Gene expression in mammals is regulated by complex networks involving higher order chromatin organiz...
Chromosome conformation capture (3C), coupled with next-generation sequencing (Hi-C), provides a mea...
Chromosome conformation capture methodologies have provided insight into the effect of 3D genomic ar...
The ability to identify regulatory interactions that mediate gene expression changes through distal ...
Background: Significant efforts have recently been put into the investigation of the spatial organiz...
Background: Significant efforts have recently been put into the investigation of the spatial organiz...
Gene expression during development and differentiation is regulated in a cell- and stage-specific ma...
We describe a method, Hi-C, to comprehensively detect chromatin interactions in the mammalian nucleu...
BACKGROUND: Genome-wide association studies have identified 196 high confidence independent signals ...
Background: Genome-wide association studies have identified 196 high confidence independent signals ...
This dissertation deals with the analysis of high-throughput chromatin conformation capture (Hi-C) d...
While we often think of the genome as a linear object, in reality chromosomes are folded in a highly...