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Functional impairment of p16(INK4A) due to CDKN2A p.Gly23Asp missense mutation
Maria Chiara Scaini1, Elisabetta Rossi, Paula Lobao Antunes de Siqueira Torres
1Section of Oncology, Department of Oncology and Surgical Sciences, University of Padova, via Gattamelata, 64, I-35128 Padova, Italy. mariachiara.scaini@unipd.it
Abstract:
The CDKN2A locus encodes for two distinct tumor suppressor proteins, p16(INK4A) and p14(ARF), involved in cell cycle regulation. CDKN2A germline mutations have been associated with familial predisposition to melanoma and other tumor types. Besides bona-fide pathogenic mutations, many sequence variants have been identified, but their effect is not well known. We detected the p.Gly23Asp missense mutation in one of the two tested melanoma patients of a family with three melanoma cases. Even though the mutated amino acid is located in a conserved domain that specifically binds to and blocks the function of CDK4/6, its lack of segregation with disease suggested a series of functional assays to discriminate between a pathogenic variant and a neutral polymorphism. The effect of this mutation has been investigated exploiting four p16(INK4A) properties: its ability (i) to bind CDK4, (ii) to inhibit pRb phosphorylation, (iii) to evenly localize in the cell, and (iv) to cause cell cycle arrest. The mutant protein properties were evaluated transfecting three different cell lines (U2-OS and NM-39, both p16-null, and SaOS 2, p53 and pRb-null) with plasmids expressing either p16(wt), p16(23Asp), or the p16(32Pro) pathogenic variant. We found that p16(23Asp) was less efficient than p16(wt) in CDK4 binding, in inhibiting pRb phosphorylation, in inducing G1 cell cycle arrest; moreover, its pattern of distribution throughout the cell was suggestive of protein aggregation, thus assessing a pathogenic role for p16(23Asp) in familial melanoma.
Insights
The CDKN2A p.Gly23Asp mutation impairs tumor suppressor p16INK4A function, suggesting a pathogenic role in familial melanoma by affecting cell cycle regulation.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- The CDKN2A gene is crucial for cell cycle regulation, encoding tumor suppressors p16INK4A and p14ARF.
- Germline mutations in CDKN2A are linked to hereditary melanoma and other cancers.
- Sequence variants in CDKN2A require functional assessment to determine pathogenicity.
Purpose of the Study:
- To functionally characterize the p.Gly23Asp missense variant in the CDKN2A gene.
- To determine if the p.Gly23Asp variant contributes to familial melanoma predisposition.
Main Methods:
- Functional assays evaluated p16INK4A properties: CDK4 binding, pRb phosphorylation inhibition, cellular localization, and cell cycle arrest.
- Experiments utilized p16-null and p53/pRb-null cell lines transfected with wild-type, p.Gly23Asp mutant, or known pathogenic p16INK4A variants.
- Protein aggregation was assessed through cellular distribution patterns.
Main Results:
- The p16(23Asp) mutant showed reduced binding affinity to CDK4 compared to wild-type p16(wt).
- p16(23Asp) was less effective in inhibiting pRb phosphorylation and inducing G1 cell cycle arrest.
- Altered cellular distribution of p16(23Asp) suggested protein aggregation, indicative of dysfunction.
Conclusions:
- The p.Gly23Asp variant exhibits impaired tumor suppressor functions of p16INK4A.
- Functional data support a pathogenic role for p16(23Asp) in familial melanoma.
- This study highlights the importance of functional assays for variant classification in cancer predisposition genes.
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