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Updated: Jan 26, 2026

A Melanoma Patient-Derived Xenograft Model
Published on: May 20, 2019
DNMT1 and DNMT3B genetic polymorphisms affect the clinical course and outcome of melanoma patients
Helena Maric1, Gordana Supic2,3, Lidija Kandolf-Sekulovic2,4
1Second Surgery Clinic, University Hospital of Foca, Foca.
Abstract:
The aberrant DNA methylation plays a critical role in a number of different malignancies, including melanoma. DNA methylation is catalyzed by DNA methyltransferases (DNMTs), involved in methylation maintenance (DNMT1) and de novo DNA methylation (DNMT3A and DNMT3B). The current study investigated the association of genetic variants in the DNMT1 and DNMT3B with the clinicopathologic features and the clinical course of melanoma patients. In the present study, DNMT1 (rs2228612, rs2228611, and rs2114724) and DNMT3B (rs406193 and rs2424932) polymorphisms were examined in 123 melanoma patients. Single nucleotide polymorphisms were assessed using TaqMan SNPs Genotyping Assays according to the manufacturer's protocols. The carriers of the variant genotype of DNMT1 rs2228612 had poorer overall survival and recurrence-free survival, (P = 0.000 and 0.000, respectively), and an increased risk for adverse outcome [hazard ratio (HR) = 6.620, 95% confidence interval (CI): 2.214-19.791, P = 0.001]. DNMT1 rs2228612 was also associated with ulceration (P = 0.045), nodal status (P = 0.030), progression (P = 0. 007), and stage of disease (P = 0.003). Univariate analysis indicated that tumor-infiltrating lymphocytes could be a marker of good prognosis in melanoma patients (HR = 0.323, 95% CI: 0.127-0.855, P = 0.025), whereas the genotype distribution of the DNMT3B rs406193 polymorphism correlated significantly with the presence of tumor-infiltrating lymphocytes (P = 0.012). The multivariate analysis showed that the DNMT1 rs2228612 polymorphism (HR = 12.126, 95% CI: 2.345-62.715, P = 0.003) is an independent predictor of poor overall survival in melanoma patients. As expected, disease progression was also found to be an independent prognostic factor in melanoma patients (HR = 37.888, 95% CI: 3.615-397.062, P = 0.002). DNMT1 rs2228612 was found to be an independent predictor of poor overall survival in melanoma patients. DNMTs polymorphisms could serve as a potential target for novel therapeutic approaches.
Insights
Genetic variants in DNA methyltransferases (DNMTs) impact melanoma patient outcomes. Specifically, the DNMT1 rs2228612 polymorphism is linked to poorer survival and serves as an independent predictor of adverse prognosis in melanoma.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Aberrant DNA methylation is crucial in various cancers, including melanoma.
- DNA methyltransferases (DNMTs) regulate DNA methylation, with DNMT1 for maintenance and DNMT3A/DNMT3B for de novo methylation.
Purpose of the Study:
- To investigate the association between genetic variants in DNMT1 and DNMT3B and the clinicopathologic features and clinical course of melanoma patients.
- To identify potential genetic markers for melanoma prognosis.
Main Methods:
- Examined DNMT1 (rs2228612, rs2228611, rs2114724) and DNMT3B (rs406193, rs2424932) polymorphisms in 123 melanoma patients.
- Assessed single nucleotide polymorphisms using TaqMan SNPs Genotyping Assays.
- Analyzed associations with survival, recurrence, clinicopathologic features, and tumor-infiltrating lymphocytes.
Main Results:
- Carriers of the DNMT1 rs2228612 variant genotype showed significantly poorer overall survival and recurrence-free survival (P=0.000 for both).
- DNMT1 rs2228612 was associated with ulceration, nodal status, progression, and disease stage.
- DNMT1 rs2228612 was identified as an independent predictor of poor overall survival in melanoma patients (HR=12.126, P=0.003).
- Tumor-infiltrating lymphocytes were a marker of good prognosis (HR=0.323, P=0.025), and DNMT3B rs406193 correlated with their presence (P=0.012).
Conclusions:
- The DNMT1 rs2228612 polymorphism is a significant independent predictor of poor overall survival in melanoma patients.
- DNMT polymorphisms may represent potential therapeutic targets for novel treatment strategies in melanoma.
- Disease progression remains a critical independent prognostic factor in melanoma.
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