Study / S8EY6J3Y02013-08-06
Massively parallel synthetic promoter assays reveal the in vivo effects of binding site variants
Ilaria Mogno, Jamie C. Kwasnieski, Barak A. Cohen
About this study
Gene promoters typically contain multiple transcription factor binding sites (TFBSs), which may vary in affinity for their cognate transcription factors (TFs). One major challenge in studying cis-regulation is to understand how TFBS variants affect gene expression. We studied the in vivo effects of TFBS variants on cis-regulation using synthetic promoters coupled with a thermodynamic model of TF binding. We measured expression driven by each promoter with RNA-seq of transcribed sequence barcodes. This allowed reporter genes to be highly multiplexed and increased our statistical power to detect the effects of TFBS variants. We analyzed the effects of TFBS variants using a thermodynamic framework that models both TF-DNA interactions and TF-TF interactions. We found that this system accurately estimates the in vivo relative affinities of TFBSs and predicts unexpected interactions between several TFBSs. Our results reveal that binding site variants can have complex effects on gene expression due to differences in TFBS affinity for cognate TFs and differences in TFBS specificity for noncognate TFs.
Full author list & citation
Ilaria Mogno, Jamie C. Kwasnieski, Barak A. Cohen. Massively parallel synthetic promoter assays reveal the in vivo effects of binding site variants. 2013-08-06. https://doi.org/10.1101/gr.157891.113
Experiments 1
E2DFPCDWV
A genome-integrated CRE-seq library in Saccharomyces cerevisiae BY4742 tested randomly ligated combinations of 12 Mig1, Reb1, Rap1, and Gcr1 TFBS variants upstream of a TSA1-YFP reporter with 15-nt 3′-UTR barcodes. The processed table aggregates the author-provided barcode-level normalized gDNA/cDNA measurements to one row per synthetic promoter label.