The functional consequences of genetic variants within 5′ untranslated regions (UTRs) on a genome-wide scale are poorly understood in disease. Here we develop a high-throughput multi-layer functional genomics method called PLUMAGE (Pooled full-length UTR Multiplex Assay on Gene Expression) to quantify the molecular consequences of somatic 5′ UTR mutations in human prostate cancer. We show that 5′ UTR mutations can control transcript levels and mRNA translation rates through the creation of DNA binding elements or RNA-based cis-regulatory motifs. We discover that point mutations can simultaneously impact transcript and translation levels of the same gene. We provide evidence that functional 5′ UTR mutations in the MAP kinase signaling pathway can upregulate pathway-specific gene expression and are associated with clinical outcomes. Our study reveals the diverse mechanisms by which the mutational landscape of 5′ UTRs can co-opt gene expression and demonstrates that single nucleotide alterations within 5′ UTRs are functional in cancer.
Full author list & citation
Yiting Lim, Sonali Arora, Samantha L. Schuster, Lukas Corey, Matthew Fitzgibbon, Cynthia L. Wladyka, Xiaoying Wu, Ilsa M. Coleman, Jeffrey J. Delrow, Eva Corey, Lawrence D. True, Peter S. Nelson, Gavin Ha, Andrew C. Hsieh. Multiplexed functional genomic analysis of 5′ untranslated region mutations across the spectrum of prostate cancer. 2021-07-09. https://doi.org/10.1038/s41467-021-24445-6
A small episomal PLUMAGE library tested full-length wild-type and mutant 5′-UTRs from ADAM32, COMT, and ZCCHC7 in PC3 cells. Each construct was linked to five known 8-bp barcodes; the packaged table combines PacBio construct-linkage counts with the published transcript and translation-efficiency summaries and pilot replicate values.
The main episomal PLUMAGE library assayed 914 synthesized full-length human 5′-UTR sequences covering 545 prostate-cancer somatic mutations using a 30-bp randomer barcode linked by PacBio long reads. PC3 and HEK293T cells were measured 24 h after transfection for DNA, total mRNA, and polysome-bound mRNA; the packaged table contains the published mutation-level transcript and translation-efficiency summaries joined to unambiguous WT/mutant constructs.
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