Identification of transcription factor binding sites using ATAC-seq
Идентификация сайтов связывания транскрипционных факторов с использованием ATAC-seq
2019-02-26
SCID: 54.1/ac2tjqrn
Discuss with AI
ATAC-seqHINT-ATACcomputational footprintingstrand-specific cleavagetransposase cleavage bias
Figures from the paper
Abstract (AI)
Transposase-Accessible Chromatin followed by sequencing (ATAC-seq) is a simple protocol for detection of open chromatin. Computational footprinting, the search for regions with depletion of cleavage events due to transcription factor binding, is poorly understood for ATAC-seq. We propose the first footprinting method considering ATAC-seq protocol artifacts. HINT-ATAC uses a position dependency model to learn the cleavage preferences of the transposase. We observe strand-specific cleavage patterns around transcription factor binding sites, which are determined by local nucleosome architecture. By incorporating all these biases, HINT-ATAC is able to significantly outperform competing methods in the prediction of transcription factor binding sites with footprints.
Key Findings
1
ATAC-seq can be used for computational footprinting but is affected by protocol-specific artifacts that were previously unaddressed.
2
HINT-ATAC is the first footprinting method that explicitly models ATAC-seq protocol artifacts using a position dependency model of transposase cleavage preferences.
3
Incorporating transposase cleavage biases and strand-specific, nucleosome-related patterns enables HINT-ATAC to significantly outperform competing methods at predicting transcription factor binding sites from footprints.
4
Strand-specific cleavage patterns around transcription factor binding sites are observed and are determined by local nucleosome architecture.
Research Object
Transcription factor binding sites in open chromatin regions detected by ATAC-seq
Research Subject
Accurate identification/prediction of transcription factor binding sites (computational footprinting) from ATAC-seq data accounting for transposase cleavage biases, strand-specific patterns, and local nucleosome architecture using HINT-ATAC
Publication Details
Publication Date
2019-02-26
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest