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Model-based Analysis of ChIP-Seq (MACS)
Genome biology · 2008 · Vol. 9(9) · pp. R137–R137
Yong Zhang(Dana-Farber Cancer Institute)Tao Liu(Dana-Farber Cancer Institute)Clifford A. Meyer(Dana-Farber/Harvard Cancer Center)Jérôme Eeckhoute(Harvard University)David S. JohnsonB Bernstein(Massachusetts General Hospital)Chad Nusbaum(Broad Institute)R Myers(Stanford Medicine)Myles Brown(Harvard University)Wei Li✉(Baylor College of Medicine)X. Shirley Liu(Dana-Farber Cancer Institute)
Abstract
We present Model-based Analysis of ChIP-Seq data, MACS, which analyzes data generated by short read sequencers such as Solexa's Genome Analyzer. MACS empirically models the shift size of ChIP-Seq tags, and uses it to improve the spatial resolution of predicted binding sites. MACS also uses a dynamic Poisson distribution to effectively capture local biases in the genome, allowing for more robust predictions. MACS compares favorably to existing ChIP-Seq peak-finding algorithms, and is freely available.
Genomics and Chromatin DynamicsGenomic variations and chromosomal abnormalitiesEpigenetics and DNA MethylationBiologyComputational biologyHuman geneticsGenome BiologyComputational genomicsEvolutionary biologyGenomicsGeneticsGenomeGene
MeSH terms
AlgorithmsHumansModels, GeneticOligonucleotide Array Sequence AnalysisCell Line, TumorChromatin ImmunoprecipitationHepatocyte Nuclear Factor 3-alpha
Funding
- National Institutes of Health
Citations
19,514
FWCI
53.24
field-weighted impact
References
14
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100%
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References
High-Resolution Profiling of Histone Methylations in the Human Genome
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