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An efficient targeted nuclease strategy for high-resolution mapping of DNA binding sites

eLife · 2017 · Vol. 6
Peter J. SkeneSteven Henikoff

Abstract

We describe Cleavage Under Targets and Release Using Nuclease (CUT&RUN), a chromatin profiling strategy in which antibody-targeted controlled cleavage by micrococcal nuclease releases specific protein-DNA complexes into the supernatant for paired-end DNA sequencing. Unlike Chromatin Immunoprecipitation (ChIP), which fragments and solubilizes total chromatin, CUT&RUN is performed in situ, allowing for both quantitative high-resolution chromatin mapping and probing of the local chromatin environment. When applied to yeast and human nuclei, CUT&RUN yielded precise transcription factor profiles while avoiding crosslinking and solubilization issues. CUT&RUN is simple to perform and is inherently robust, with extremely low backgrounds requiring only ~1/10th the sequencing depth as ChIP, making CUT&RUN especially cost-effective for transcription factor and chromatin profiling. When used in conjunction with native ChIP-seq and applied to human CTCF, CUT&RUN mapped directional long range contact sites at high resolution. We conclude that in situ mapping of protein-DNA interactions by CUT&RUN is an attractive alternative to ChIP-seq.

Genomics and Chromatin DynamicsChromosomal and Genetic VariationsRNA and protein synthesis mechanismsMicrococcal nucleaseChromatinCTCFChromatin immunoprecipitationNucleaseChIP-sequencingDNAChIP-on-chipBiologyMolecular biology

MeSH terms

Binding SitesDNAHumansMicrococcal NucleaseMolecular BiologyProtein BindingSaccharomyces cerevisiaeTranscription Factors

Funding

  • Howard Hughes Medical Institute
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