ChIP-nexus Enables Improved Detection of In Vivo Transcription Factor Binding Footprints¶
He, Q., Johnston, J., & Zeitlinger, J. (2015). ChIP-nexus Enables Improved Detection of In Vivo Transcription Factor Binding Footprints. Nature Biotechnology, 395-401.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- ChIP-exo
- The original protocol, later platform adaptations, ChIP-nexus, and simplified ChIP-exo protocols differ in adapter attachment, ligation, circularization, barcoding, and library yield, but retain that exonuclease-stop measurement principle.
This sourcePrimary support for the ChIP-nexus variant, single-ligation/circularization/barcode boundary, and retained exonuclease-footprinting structure.
- The original protocol, later platform adaptations, ChIP-nexus, and simplified ChIP-exo protocols differ in adapter attachment, ligation, circularization, barcoding, and library yield, but retain that exonuclease-stop measurement principle.
Verification¶
This reference passed the adversarial substantiation pipeline: it was checked to exist and to support the claim it is attached to. See how references were verified.
Links previously used in the corpus¶
Before the registry existed this work was also linked 1 other way.
Registry ID ref:10ca007897e1 · see in the full table