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Updated: Jun 16, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Functional analysis of CDKN2A/p16INK4a 5'-UTR variants predisposing to melanoma
Alessandra Bisio1, Sabina Nasti, Jennifer J Jordan
1Unit of Molecular Mutagenesis and DNA Repair, National Institute for Cancer Research IST, 16132 Genoa, Italy.
Abstract:
Germline CDKN2A mutations are observed in 20-50% of melanoma-prone families. We identified melanoma patients that were heterozygous for non-coding germline variants in the 5'-UTR of CDKN2A (c.-21C > T; c.-25C > T&c.-180G > A; c.-56G > T; c.-67G > C) and examined their impact on the p16(INK4a) 5'-UTR activity using two luciferase-based reporter vectors that differ in basal transcription level and that were transfected into the melanoma-derived WM266-4 and in the breast cancer-derived MCF7 cells. The wild-type 5'-UTR sequence, containing a reported SNP (c.-33G > C) and a known melanoma-predisposing mutation (c.-34G > T), was included as controls. Results revealed that the variants at -21 and -34 severely reduced the reporter activity. The variants at -56 and at -25&-180 exhibited a milder impact, while results with c.-67G > C were dependent on the plasmid type. Quantification of the luciferase mRNA indicated that the effects of the variants were mainly post-transcriptional. Using a bicistronic dual-luciferase reporter plasmid, we confirmed that c.-21C > T and c.-34G > T had a severe negative impact in both cell lines. We also applied a polysomal profiling technique to samples heterozygous for the 5'-UTR variants, including patient-derived lymphoblasts. Analysis of allelic imbalance indicated that in addition to the c.-21C > T variant, the c.-56T > G and c.-67G > C variants also reduced mRNA translation efficiency. Overall, our results suggest that the c.-21C > T sequence variant is a melanoma-predisposing mutation. The c.-25C > T&c.-180G > A and particularly the c.-56G > T variants showed a range of intermediate functional defects in the different assays, and were not observed in the control population. We propose that these variants should be considered as potential mutations.
Insights
Germline variants in the CDKN2A gene
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Germline mutations in the CDKN2A gene are linked to familial melanoma.
- Non-coding variants in the 5'-UTR of CDKN2A may influence melanoma predisposition.
Purpose of the Study:
- To investigate the functional impact of specific 5'-UTR variants in the CDKN2A gene on p16(INK4a) expression.
- To determine if these variants are associated with melanoma predisposition.
Main Methods:
- Luciferase-based reporter assays in melanoma and breast cancer cell lines.
- Analysis of reporter gene activity and mRNA levels.
- Bicistronic dual-luciferase reporter assays.
- Polysomal profiling of patient-derived lymphoblasts.
Main Results:
- The c.-21C > T and c.-34G > T variants significantly reduced reporter activity, indicating a severe impact.
- Variants c.-56G > T, c.-25C > T & c.-180G > A showed milder functional defects.
- Post-transcriptional mechanisms, including reduced translation efficiency, were identified as the primary effects of these variants.
- The c.-21C > T variant was confirmed as a melanoma-predisposing mutation.
Conclusions:
- The c.-21C > T variant is a significant melanoma-predisposing mutation.
- Variants c.-25C > T & c.-180G > A and c.-56G > T exhibit intermediate functional defects and warrant consideration as potential mutations.
- Functional analysis of non-coding variants is crucial for understanding cancer predisposition.
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