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Quantitative ChIP-Seq Normalization Reveals Global Modulation of the Epigenome

Cell Reports · 2014 · Vol. 9(3) · pp. 1163–1170

Abstract

Epigenomic profiling by chromatin immunoprecipitation coupled with massively parallel DNA sequencing (ChIP-seq) is a prevailing methodology used to investigate chromatin-based regulation in biological systems such as human disease, but the lack of an empirical methodology to enable normalization among experiments has limited the precision and usefulness of this technique. Here, we describe a method called ChIP with reference exogenous genome (ChIP-Rx) that allows one to perform genome-wide quantitative comparisons of histone modification status across cell populations using defined quantities of a reference epigenome. ChIP-Rx enables the discovery and quantification of dynamic epigenomic profiles across mammalian cells that would otherwise remain hidden using traditional normalization methods. We demonstrate the utility of this method for measuring epigenomic changes following chemical perturbations and show how reference normalization of ChIP-seq experiments enables the discovery of disease-relevant changes in histone modification occupancy.

Genomics and Chromatin DynamicsEpigenetics and DNA MethylationRNA modifications and cancerEpigenomeEpigenomicsChromatin immunoprecipitationNormalization (sociology)Computational biologyChromatinHistoneBiologyComputer scienceDNA methylation

MeSH terms

AnimalsBenzimidazolesDrosophila melanogasterHistonesHumansLysineMethylationReference StandardsJurkat CellsEpigenesis, GeneticChromatin ImmunoprecipitationHigh-Throughput Nucleotide Sequencing
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References
Modification of Enhancer Chromatin: What, How, and Why?
Molecular Cell · 2013 · 1,550 citations
Genome Regulation by Long Noncoding RNAs
Annual Review of Biochemistry · 2012 · 4,065 citations
Fast gapped-read alignment with Bowtie 2
Nature Methods · 2012 · 59,710 citations
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