Somatic Functional Deletions of Upstream Open Reading Frame-Associated Initiation and Termination Codons in Human Cancer

Lara Jürgens, Felix Manske, Elvira Hubert, Tabea Kischka, Lea Flötotto, Oliver Klaas, Victoria Shabardina, Christoph Schliemann, Wojciech Makalowski andKlaus Wethmar

Research article (journal) | Peer reviewed

Abstract

Upstream open reading frame (uORF)-mediated translational control has emerged as an important regulatory mechanism in human health and disease. However, a systematic search for cancer-associated somatic uORF mutations has not been performed. Here, we analyzed the genetic variability at canonical (uAUG) and alternative translational initiation sites (aTISs), as well as the associated upstream termination codons (uStops) in 3394 whole-exome-sequencing datasets from patient samples of breast, colon, lung, prostate, and skin cancer and of acute myeloid leukemia, provided by The Cancer Genome Atlas research network. We found that 66.5% of patient samples were affected by at least one of 5277 recurrent uORF-associated somatic single nucleotide variants altering 446 uAUG, 347 uStop, and 4733 aTIS codons. While twelve uORF variants were detected in all entities, 17 variants occurred in all five types of solid cancer analyzed here. Highest frequencies of individual somatic variants in the TLSs of NBPF20 and CHCHD2 reached 10.1% among LAML and 8.1% among skin cancer patients, respectively. Functional evaluation by dual luciferase reporter assays identified 19 uORF variants causing significant translational deregulation of the associated main coding sequence, ranging from 1.73-fold induction for an AUG.1 > UUG variant in SETD4 to 0.006-fold repression for a CUG.6 > GUG variant in HLA-DRB1. These data suggest that somatic uORF mutations are highly prevalent in human malignancies and that defective translational regulation of protein expression may contribute to the onset or progression of cancer.

Details about the publication

JournalBiomedicines
Volume9
Issue6
Article number618
StatusPublished
Release year2021 (29/05/2021)
Language in which the publication is writtenEnglish
DOI10.3390/biomedicines9060618
Link to the full texthttps://www.mdpi.com/2227-9059/9/6/618/htm
Keywordsgene expression regulation; upstream open reading frame; cancer; whole-exome-sequencing; translational control

Authors from the University of Münster

Kischka, Tabea
Institute of Bioinformatics
Klaas, Oliver
Medical Clinic of Internal Medicine A (Hematology, Oncology, and Oneumology) (Med A)
Makalowski, Wojciech
Institute of Bioinformatics
Manske, Felix
Institute of Bioinformatics
Schliemann, Christoph
Medical Clinic of Internal Medicine A (Hematology, Oncology, and Oneumology) (Med A)
Shabardina, Victoria
Institute of Medical Biochemistry
Wethmar, Klaus
Medical Clinic of Internal Medicine A (Hematology, Oncology, and Oneumology) (Med A)