Study / S7AZ7BZ4B2013-07-05

Deciphering the rules by which 5′-UTR sequences affect protein expression in yeast

Shlomi Dvir, Lars Velten, Eilon Sharon, Danny Zeevi, Lucas B. Carey et al.

About this study

The 5′-untranslated region (5′-UTR) of mRNAs contains elements that affect expression, yet the rules by which these regions exert their effect are poorly understood. Here, we studied the impact of 5′-UTR sequences on protein levels in yeast, by constructing a large-scale library of mutants that differ only in the 10 bp preceding the translational start site of a fluorescent reporter. Using a high-throughput sequencing strategy, we obtained highly accurate measurements of protein abundance for over 2,000 unique sequence variants. The resulting pool spanned an approximately sevenfold range of protein levels, demonstrating the powerful consequences of sequence manipulations of even 1-10 nucleotides immediately upstream of the start codon. We devised computational models that predicted over 70% of the measured expression variability in held-out sequence variants. Notably, a combined model of the most prominent features successfully explained protein abundance in an additional, independently constructed library, whose nucleotide composition differed greatly from the library used to parameterize the model. Our analysis reveals the dominant contribution of the start codon context at positions −3 to −1, mRNA secondary structure, and out-of-frame upstream AUGs (uAUGs) to phenotypic diversity, thereby advancing our understanding of how protein levels are modulated by 5′-UTR sequences, and paving the way toward predictably tuning protein expression through manipulations of 5′-UTRs.

Full author list & citation

Shlomi Dvir, Lars Velten, Eilon Sharon, Danny Zeevi, Lucas B. Carey, Adina Weinberger, Eran Segal. Deciphering the rules by which 5′-UTR sequences affect protein expression in yeast. 2013-07-05. https://doi.org/10.1073/pnas.1222534110

Experiments 1

E8G9WT411

Large-scale RPL8A 5′-UTR mutant library (2,041 variants)

A genomically integrated RPL8A promoter–YFP reporter library in Saccharomyces cerevisiae varied the 10 nucleotides immediately upstream of the YFP start codon. Cells were sorted into 24 YFP/mCherry fluorescence bins, and bin-specific sequencing was used to estimate mean protein abundance for each variant.

Sort-Seq / Flow-Seq MPRABudding yeast
Explore data

Raw source data 2 files

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