DNaseI footprinting is an established assay for identifying transcription factor (TF)-DNA interactions with single base pair resolution. High-throughput DNase-seq assays have recently been used to detect in vivo DNase footprints across the genome. Multiple computational approaches have been developed to identify DNase-seq footprints as predictors of TF binding. However, recent studies have pointed to a substantial cleavage bias of DNase and its negative impact on predictive performance of footprinting. To assess the potential for using DNase-seq to identify individual binding sites, we performed DNase-seq on deproteinized genomic DNA and determined sequence cleavage bias. This allowed us to build bias corrected and TF-specific footprint mod...
<p>A: Modeling the DNase I cleavage profile at bound sites increases the prediction accuracy of msCe...
Identifying the locations of transcription factor binding sites is critical for understanding how ge...
<p>Cis-elements govern the key step of transcription to regulate gene expression within a cell. Iden...
DNaseI footprinting is an established assay for identi-fying transcription factor (TF)–DNA interacti...
These authors contributed equally to this work. DNase-seq is a powerful technique for identifying ci...
Characterizing the tissue-specific binding sites of transcription factors (TFs) is essential to reco...
DNase-seq and ATAC-seq are broadly used methods to assay open chromatin regions genome-wide. The sin...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
Transcriptional regulation orchestrates the proper temporal and spatial expression of genes. The ide...
BACKGROUND: DNase-seq and ATAC-seq are broadly used methods to assay open chromatin regions genome-w...
The identification of cis-acting elements on DNA is crucial for the understanding of the complex reg...
<div><p>Understanding global gene regulation depends critically on accurate annotation of regulatory...
DNA sequence and local chromatin landscape act jointly to determine transcription factor (TF) bindin...
International audienceChromatin immunoprecipitation followed by se-quencing (ChIP-seq) is the most p...
In the era of genome-wide association studies (GWAS) and personalized medicine, predicting the impac...
<p>A: Modeling the DNase I cleavage profile at bound sites increases the prediction accuracy of msCe...
Identifying the locations of transcription factor binding sites is critical for understanding how ge...
<p>Cis-elements govern the key step of transcription to regulate gene expression within a cell. Iden...
DNaseI footprinting is an established assay for identi-fying transcription factor (TF)–DNA interacti...
These authors contributed equally to this work. DNase-seq is a powerful technique for identifying ci...
Characterizing the tissue-specific binding sites of transcription factors (TFs) is essential to reco...
DNase-seq and ATAC-seq are broadly used methods to assay open chromatin regions genome-wide. The sin...
This is an open access article distributed under the terms of the Creative Commons Attribution Licen...
Transcriptional regulation orchestrates the proper temporal and spatial expression of genes. The ide...
BACKGROUND: DNase-seq and ATAC-seq are broadly used methods to assay open chromatin regions genome-w...
The identification of cis-acting elements on DNA is crucial for the understanding of the complex reg...
<div><p>Understanding global gene regulation depends critically on accurate annotation of regulatory...
DNA sequence and local chromatin landscape act jointly to determine transcription factor (TF) bindin...
International audienceChromatin immunoprecipitation followed by se-quencing (ChIP-seq) is the most p...
In the era of genome-wide association studies (GWAS) and personalized medicine, predicting the impac...
<p>A: Modeling the DNase I cleavage profile at bound sites increases the prediction accuracy of msCe...
Identifying the locations of transcription factor binding sites is critical for understanding how ge...
<p>Cis-elements govern the key step of transcription to regulate gene expression within a cell. Iden...