Study / S1GFRAGOZ2019-03-19

Systematic Dissection of Sequence Elements Controlling σ70 Promoters Using a Genomically-Encoded Multiplexed Reporter Assay in E. coli

Guillaume Urtecho, Arielle D. Tripp, Kimberly D. Insigne, Hwangbeom Kim, Sriram Kosuri

About this study

Promoters are the key drivers of gene expression and are largely responsible for the regulation of cellular responses to time and environment. In E. coli, decades of studies have revealed most, if not all, of the sequence elements necessary to encode promoter function. Despite our knowledge of these motifs, it is still not possible to predict the strength and regulation of a promoter from primary sequence alone. Here we develop a novel multiplexed assay to study promoter function in E. coli by building a site-specific genomic recombination-mediated cassette exchange (RMCE) system that allows for the facile construction and testing of large libraries of genetic designs integrated into precise genomic locations. We build and test a library of 10,898 σ70 promoter variants consisting of all combinations of a set of eight −35 elements, eight −10 elements, three UP elements, eight spacers, and eight backgrounds. We find that the −35 and −10 sequence elements can explain approximately 74% of the variance in promoter strength within our dataset using a simple log-linear statistical model. Simple neural network models explain greater than 95% of the variance in our dataset by capturing nonlinear interactions with the spacer, background, and UP elements.

Full author list & citation

Guillaume Urtecho, Arielle D. Tripp, Kimberly D. Insigne, Hwangbeom Kim, Sriram Kosuri. Systematic Dissection of Sequence Elements Controlling σ70 Promoters Using a Genomically-Encoded Multiplexed Reporter Assay in E. coli. 2019-03-19. https://doi.org/10.1021/acs.biochem.7b01069

Experiments 1

E7D5FLF94

Genomically integrated σ70 promoter combinatorial library in E. coli MG1655

A synthetic library combining UP, −35, spacer, −10, and genomic background elements was integrated at the nth-ydgR landing pad using recombination-mediated cassette exchange (RMCE). RNA/DNA barcode sequencing from three biological replicates, including one pair of technical replicates, quantified promoter activity during exponential growth.

Targeted Genomic Integration MPRANCBITaxon:511145U00096.2
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Raw source data 5 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 5 files (ZIP)GSE108535_barcode_counts_normalized.txt.gzGSE108535_barcode_mapping.txt.gzGSE108535_family.soft.gzGSE108535_sigma70_variant_data.txt.gzPMC6389444_full_text.xml

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