CistromeFinder for ChIP-seq and DNase-seq data reuse

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CistromeFinder for ChIP-seq and DNase-seq data reuse

SUMMARY Chromatin immunoprecipitation and DNase I hypersensitivity assays with high-throughput sequencing have greatly accelerated the understanding of transcriptional and epigenetic regulation, although data reuse for the community of experimental biologists has been challenging. We created a data portal CistromeFinder that can help query, evaluate and visualize publicly available Chromatin im...

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DNaseR: DNase I footprinting analysis of DNase-seq data

The combination of DNase I digestion and high-throughput sequencing (DNaseseq) has been used recently to map chromatin accessibility in a given tissue or cell type on a genome-wide scale (Song and Crawford, 2010). In addition to DNase I hypersensitive sites (DHSs), short regions of protected nucleotides known as footprints can be detected using a technique known as ”digital genomic footprinting...

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Model-Free Inference for ChIP-Seq Data

Due to its higher resolution mapping and stronger ChIP enrichment signals, ChIP-seq tends to replace ChIP-chip technology in studying genome-wide protein-DNA interactions, while the massive digital ChIP-seq data present new challenges to statisticians. To date, most methods proposed in the literature for ChIP-seq data analysis are model based, however, finding a single model workable for all da...

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CistromeMap: a knowledgebase and web server for ChIP-Seq and DNase-Seq studies in mouse and human

SUMMARY Transcription and chromatin regulators, and histone modifications play essential roles in gene expression regulation. We have created CistromeMap as a web server to provide a comprehensive knowledgebase of all of the publicly available ChIP-Seq and DNase-Seq data in mouse and human. We have also manually curated metadata to ensure annotation consistency, and developed a user-friendly di...

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ژورنال

عنوان ژورنال: Bioinformatics

سال: 2013

ISSN: 1367-4803,1460-2059

DOI: 10.1093/bioinformatics/btt135