Nature Communications · 2019 · 128 citations · 42 references
EngineeringHic-reg PredictionsMolecular BiologyHi-c CountsGene Regulatory NetworkMatrix TheorySequence MotifComputational GenomicsNumerical SimulationMatrix MethodSilico PredictionPhysicsGenome StructurePathway AnalysisGene ExpressionMatrix AnalysisBioinformaticsPresent Hic-regCell BiologyFunctional GenomicsChromatinComputational ScienceNatural SciencesParticle PhysicsComputational BiologySystems BiologyMultiscale Modeling
The three-dimensional (3D) organization of the genome plays an important role in gene regulation bringing distal sequence elements in 3D proximity to genes hundreds of kilobases away. Hi-C is a powerful genome-wide technique to study 3D genome organization. Owing to experimental costs, high resolution Hi-C datasets are limited to a few cell lines. Computational prediction of Hi-C counts can offer a scalable and inexpensive approach to examine 3D genome organization across multiple cellular contexts. Here we present HiC-Reg, an approach to predict contact counts from one-dimensional regulatory signals. HiC-Reg predictions identify topologically associating domains and significant interactions that are enriched for CCCTC-binding factor (CTCF) bidirectional motifs and interactions identified from complementary sources. CTCF and chromatin marks, especially repressive and elongation marks, are most important for HiC-Reg's predictive performance. Taken together, HiC-Reg provides a powerful framework to generate high-resolution profiles of contact counts that can be used to study individual locus level interactions and higher-order organizational units of the genome.
42
Leo Breiman · Machine Learning · 2001 · 119.3K citations · Full text
The Sequence Alignment/Map format and SAMtools
Heng Li, Alec Wysoker, Tim Fennell et al. · Bioinformatics · 2009 · 64.7K citations · Full text
Fast gapped-read alignment with Bowtie 2
Ben Langmead, Steven L. Salzberg · Nature Methods · 2012 · 58.3K citations · Full text
Long-read Sequencing, Sequence Assembly, Natural Sciences +7
Cytoscape: A Software Environment for Integrated Models of Biomolecular Interaction Networks
Paul Shannon, Andrew Markiel, Owen Ozier et al. · Genome Research · 2003 · 52.1K citations · Full text
BEDTools: a flexible suite of utilities for comparing genomic features
Aaron R. Quinlan, Ira M. Hall · Bioinformatics · 2010 · 28.9K citations · Full text