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Updated: Jun 16, 2026

A Melanoma Patient-Derived Xenograft Model
Published on: May 20, 2019
Genetic Analysis of Acral Melanomas From Southern African Patients
Bianca Tod1, Yoonhee Nam2, Deniz Ece Kaya3
1Division of Dermatology, Department of Medicine, Faculty of Medicine and Health Sciences, Stellenbosch University and Tygerberg Academic Hospital, Cape Town, South Africa.
Abstract:
While the molecular characteristics of cutaneous melanomas (CMs) in individuals with light skin have been extensively studied, less is known about acral melanoma (AM), a non-ultraviolet radiation-induced melanoma more frequently found in individuals with darker skin. Exome and whole genome sequencing of 25 AMs from South African patients with a range of ancestral backgrounds were performed. While close to 50% in CMs, only one AM in a patient of European ancestry harbored an alteration at p.V600 in BRAF. 76% of tumors were triple wild-type. There were hotspot mutations in KIT, mutations in genes encoding components of the MAPK pathway (K57N in MAP2K1 and Y71H in HRAS), and novel candidate driver mutations in genes including PROS1, RGPD3, and SF3A3. Copy number gains included regions with TERT, CDK4, PAK1/GAB2, and DAD1 (chr14q11.2). Gain of chr17q25.1 harboring CDK3 was seen in samples with African ancestry. Eleven significantly deleted regions included chr1q43 (MAP1LC3C) and homozygous deletions of HLA-DRB1, PHF10 (chr6q27), and ATMIN (chr16q23). Mutational signatures included chromosomal instability and chromothripsis. There was a robust ancestry-related difference in tumor evolutionary dynamics where African ancestry was correlated with more genome doubling and clonality with less evolutionary branching.
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