Study / S4W63FKVQ2023-08-29

Multi-level functional genomics reveals molecular and cellular oncogenicity of patient-based 3′ untranslated region mutations

Samantha L. Schuster, Sonali Arora, Cynthia L. Wladyka, Pushpa Itagi, Lukas Corey et al.

About this study

3′ untranslated region (3′ UTR) somatic mutations represent a largely unexplored avenue of alternative oncogenic gene dysregulation. To determine the significance of 3′ UTR mutations in disease, we identify 3′ UTR somatic variants across 185 advanced prostate tumors, discovering 14,497 single-nucleotide mutations enriched in oncogenic pathways and 3′ UTR regulatory elements. By developing two complementary massively parallel reporter assays, we measure how thousands of patient-based mutations affect mRNA translation and stability and identify hundreds of functional variants that allow us to define determinants of mutation significance. We demonstrate the clinical relevance of these mutations, observing that CRISPR-Cas9 endogenous editing of distinct variants increases cellular stress resistance and that patients harboring oncogenic 3′ UTR mutations have a particularly poor prognosis. This work represents an expansive view of the extent to which disease-relevant 3′ UTR mutations affect mRNA stability, translation, and cancer progression, uncovering principles of regulatory functionality and potential therapeutic targets in previously unexplored regulatory regions.

Full author list & citation

Samantha L. Schuster, Sonali Arora, Cynthia L. Wladyka, Pushpa Itagi, Lukas Corey, Dave Young, Bethany L. Stackhouse, Lori Kollath, Qian V. Wu, Eva Corey, Lawrence D. True, Gavin Ha, Patrick J. Paddison, Andrew C. Hsieh. Multi-level functional genomics reveals molecular and cellular oncogenicity of patient-based 3′ untranslated region mutations. 2023-08-29. https://doi.org/10.1016/j.celrep.2023.112840

Experiments 2

E7W5IPOFC

PC3 polysome-profiling 3′ UTR variant MPRA

An episomal luciferase library carrying paired 201-bp wild-type and mutant patient-derived human 3′ UTR fragments was transfected into PC3 prostate cancer cells. Six biological replicates were fractionated into total RNA, 80S, low-polysome, and high-polysome pools, with matched plasmid DNA to estimate allele-specific translation-efficiency effects.

OtherHumanGRCh38
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E8RPENGKN

PC3 IVT mRNA 3′ UTR stability MPRA

A fully capped and polyadenylated in-vitro-transcribed reporter mRNA library carrying paired 201-bp wild-type and mutant human 3′ UTR fragments was transfected into PC3 cells. Six biological replicates were sampled at 1, 3, 6, 12, and 24 hours to quantify allele-specific RNA decay and stability.

3' UTR / RNA Stability MPRA (MPRAu)HumanGRCh38
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Raw source data 9 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 9 files (ZIP)GSE200302_family.soft.gzGSE200302_log2_cpm_counts_all_samples.txt.gzGSE200302_Twist_Oligo_Order_with_merged_ids.txt.gzGSE200303_family.soft.gzGSE200303_RAW.tarGSE200304_family.soft.gzGSE217530_family.soft.gzGSE217530_log2_cpm_IVT_librray_April2022.txt.gzsource_notes.txt

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