Abstract
Disruptions in local chromatin structure often indicate features of biological interest such as regulatory regions. We find that sonication of cross-linked chromatin, when combined with a size-selection step and massively parallel short-read sequencing, can be used as a method (Sono-Seq) to map locations of high chromatin accessibility in promoter regions. Sono-Seq sites frequently correspond to actively transcribed promoter regions, as evidenced by their co-association with RNA Polymerase II ChIP regions, transcription start sites, histone H3 lysine 4 trimethylation (H3K4me3) marks, and CpG islands; signals over other sites, such as those bound by the CTCF insulator, are also observed. The pattern of breakage by Sono-Seq overlaps with, but is distinct from, that observed for FAIRE and DNase I hypersensitive sites. Our results demonstrate that Sono-Seq can be a useful and simple method by which to map many local alterations in chromatin structure. Furthermore, our results provide insights into the mapping of binding sites by using ChIP-Seq experiments and the value of reference samples that should be used in such experiments.
MeSH Terms
Animals
Base Sequence
Chromatin
Chromosome Mapping/methods
Gene Expression
Genetic Markers
HeLa Cells
Histones/metabolism
Humans
Methylation
Mice
Oligonucleotide Array Sequence Analysis/methods
Sequence Analysis, DNA/methods
Chemicals
Chromatin
Genetic Markers
Histones
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Auerbach Raymond K
Program in Computational Biology, Yale University, New Haven, CT 06520, USA.
Euskirchen Ghia
Rozowsky Joel
Lamarre-Vincent Nathan
Moqtaderi Zarmik
Lefrançois Philippe
Struhl Kevin
Gerstein Mark
Snyder Michael
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