Abstract
The ability to correlate chromosome conformation and gene expression gives a great deal of information regarding the strategies used by a cell to properly regulate gene activity. 4C-Seq is a relatively new and increasingly popular technology where the set of genomic interactions generated by a single point in the genome can be determined. 4C-Seq experiments generate large, complicated data sets and it is imperative that signal is properly distinguished from noise. Currently, there are a limited number of methods for analyzing 4C-Seq data. Here, we present a new method, fourSig, which in addition to being precise and simple to use also includes a new feature that prioritizes detected interactions. Our results demonstrate the efficacy of fourSig with previously published and novel 4C-Seq data sets and show that our significance prioritization correlates with the ability to reproducibly detect interactions among replicates. © 2014 © The Author(s) 2014. Published by Oxford University Press.
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CITATION STYLE
Williams, R. L., Starmer, J., Mugford, J. W., Calabrese, J. M., Mieczkowski, P., Yee, D., & Magnuson, T. (2014). FourSig: A method for determining chromosomal interactions in 4C-Seq data. Nucleic Acids Research, 42(8). https://doi.org/10.1093/nar/gku156
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