About this study
Cellular transcription enables cells to adapt to various stimuli and maintain homeostasis. Transcription factors bind to transcription response elements (TREs) in gene promoters, initiating transcription. Synthetic promoters, derived from natural TREs, can be engineered to control exogenous gene expression using endogenous transcription machinery. This technology has found extensive use in biological research for applications including reporter gene assays, biomarker development, and programming synthetic circuits in living cells. However, a reliable and precise method for selecting minimally-sized synthetic promoters with desired background, amplitude, and stimulation response profiles has been elusive. In this study, we introduce a massively parallel reporter assay library containing 6184 synthetic promoters, each less than 250 bp in length. This comprehensive library allows for rapid identification of promoters with optimal transcriptional output parameters across multiple cell lines and stimuli. We showcase this library’s utility to identify promoters activated in unique cell types, and in response to metabolites, mitogens, cellular toxins, and agonism of both aminergic and non-aminergic GPCRs. We further show these promoters can be used in luciferase reporter assays, eliciting 50–100 fold dynamic ranges in response to stimuli. Our platform is effective, easily implemented, and provides a solution for selecting short-length promoters with precise performance for a multitude of applications.
Full author list & citation
Adam M. Zahm, William S. Owens, Samuel R. Himes, Kathleen E. Rondem, Braden S. Fallon, Alexa N. Gormick, Joshua S. Bloom, Sriram Kosuri, Henry Chan, Justin G. English. Discovery and Validation of Context-Dependent Synthetic Mammalian Promoters. 2023-05-11. https://doi.org/10.1101/2023.05.11.539703
Experiments 5
E1Q5VX3GR
Transient episomal TRE-MPRA of the synthetic promoter library in HEK293, Neuro-2a, BHK-21, HeLa, MDA-MB-231, and A375 cells under serum-free and 10% FBS conditions. The table reports aggregate RNA/DNA and treatment/control values across cell lines plus publisher baseline and FBS comparisons.
E48JMN21E
Transient episomal TRE-MPRA of 6,144 detected synthetic promoter constructs in HEK293 cells, measuring serum and forskolin responses against untreated cells. The table combines public aggregate barcode RPM data with publisher MPRAnalyze statistics and baseline replicate values.
E6DEXPSJV
Transient episomal TRE-MPRA in HEK293 cells expressing aminergic GPCRs, with agonist-treated versus receptor-only controls. Aggregate barcode RPM-derived values are provided for DRD1, DRD2, HTR2A, and OPRM1, with publisher inferential results for the broader ADRB2/D1R/D2R/HTR2A/OPRM1 and endogenous ADRB2 comparisons.
E76LG2CLB
Transient episomal TRE-MPRA in HEK293 cells expressing PAR1, GPR91, MRGPRX2, or NTSR1, including NTSR1 agonism with Gq inhibition. Aggregate barcode RPM-derived treatment/control values are joined to publisher inferential statistics and biplot coordinates where available.
E8RR8NOHM
Transient episomal TRE-MPRA across ten HEK293 stimulus conditions, including mitogens, heavy metals, stressors, and forskolin. Aggregate RNA/DNA and treatment/control log2 fold changes were calculated from the public RPM matrix, with available publisher inferential results joined by architecture.