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Updated: Sep 20, 2026

The ChroP Approach Combines ChIP and Mass Spectrometry to Dissect Locus-specific Proteomic Landscapes of Chromatin
Published on: April 11, 2014
HisTrader identifies nucleosome-free regions within ChIP-based profiling of histone post-translational modifications
Eftyhios Kirbizakis1, Yifei Yan2, Ansley Gnanapragasam1
1The Cancer Research Program, Research Institute of the McGill University Health Centre (RI-MUHC), Montreal, Quebec, Canada; Department of Human Genetics, McGill University, Montreal, Quebec, Canada.
Abstract:
Enhancers and promoters regulate cell identity through the binding of transcription factors (TFs) to specific DNA motifs within accessible chromatin. These regulatory regions are often identified using chromatin immunoprecipitation (ChIP)-based assays targeting histone modifications, such as ChIP sequencing (ChIP-seq), HiChIP, and proximity-ligation-assisted ChIP-seq (PLAC-seq). However, the large size of the enriched regions, or peaks, can make it difficult to pinpoint the precise DNA sequence where TFs act or where trait- or disease-associated variants exert their effects. We present HisTrader, a computational approach that identifies nucleosome-free regions (NFRs) within ChIP-based profiling of histone modification peaks, which reduces the target sequence length for motif discovery and genetic variant prioritization. By focusing on TF accessible sites, HisTrader improves motif-based detection of the regulatory mechanisms linking cellular transitions and disease states. In addition, HisTrader enables more accurate characterization of regulatory elements affected by genetic variation contributing to disease.
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