| Literature DB >> 25910213 |
Juan I Fuxman Bass1, Nidhi Sahni2, Shaleen Shrestha1, Aurian Garcia-Gonzalez1, Akihiro Mori1, Numana Bhat1, Song Yi2, David E Hill2, Marc Vidal2, Albertha J M Walhout3.
Abstract
Gene regulatory networks (GRNs) comprising interactions between transcription factors (TFs) and regulatory loci control development and physiology. Numerous disease-associated mutations have been identified, the vast majority residing in non-coding regions of the genome. As current GRN mapping methods test one TF at a time and require the use of cells harboring the mutation(s) of interest, they are not suitable to identify TFs that bind to wild-type and mutant loci. Here, we use gene-centered yeast one-hybrid (eY1H) assays to interrogate binding of 1,086 human TFs to 246 enhancers, as well as to 109 non-coding disease mutations. We detect both loss and gain of TF interactions with mutant loci that are concordant with target gene expression changes. This work establishes eY1H assays as a powerful addition to the toolkit of mapping human GRNs and for the high-throughput characterization of genomic variants that are rapidly being identified by genome-wide association studies.Entities:
Mesh:
Substances:
Year: 2015 PMID: 25910213 PMCID: PMC4409666 DOI: 10.1016/j.cell.2015.03.003
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582