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Pharmacologic Induction of Epidermal Melanin and Protection Against Sunburn in a Humanized Mouse Model
Published on: September 7, 2013
X inactivation, DNA deletion, and microsatellite instability in common acquired melanocytic nevi
J O Indsto1, A R Cachia, R F Kefford
1Westmead Institute for Cancer Research, University of Sydney at Westmead Millennium Institute, Darcy Road, Westmead, New South Wales 2145, Australia. James_Indsto@wmi.usyd.edu.au
Abstract:
We have investigated several molecular characteristics of common acquired melanocytic nevi to clarify their relationship to malignant melanoma, which is characterized by clonality and the progressive accumulation of DNA deletions. Twenty-four common acquired nevi were subjected to analysis for loss of heterozygosity at four loci on chromosome 9p and six loci on 10q that are commonly deleted in melanoma, but no deletions were seen. X inactivation analysis was performed in lesions from females, using the methylation-sensitive restriction HpaII site in the CAG microsatellite repeat (HUMARA) in exon 1 of the androgen receptor (AR) gene. In 14 melanomas, 11 (92%) were confirmed to have skewed X inactivation, consistent with monoclonality, as were 16 (80%) of 20 benign nevi. One nevus (5%) and 4 (33%) of 12 melanomas also showed loss of heterozygosity at HUMARA. One nevus showed an additional allele, consistent with low level microsatellite instability, at one of the 11 loci that were examined. Common melanocytic nevi, therefore, arise by apparently clonal proliferation, but they do not share chromosomal deletions that are characteristic of melanoma. However, skewed X inactivation patterns were seen in some samples of adjacent microdissected normal epidermis.
Insights
Common melanocytic nevi exhibit clonal proliferation, similar to melanoma. However, benign nevi lack the characteristic chromosomal deletions found in melanoma, suggesting distinct molecular pathways.
Area of Science:
- Dermatology
- Oncology
- Molecular Biology
Background:
- Malignant melanoma is characterized by clonality and DNA deletions.
- Understanding benign nevi's molecular features is crucial for distinguishing them from melanoma.
Purpose of the Study:
- To investigate molecular characteristics of common acquired melanocytic nevi.
- To clarify the relationship between benign nevi and malignant melanoma.
- To identify potential molecular markers differentiating nevi from melanoma.
Main Methods:
- Analysis of loss of heterozygosity at chromosome 9p and 10q loci in 24 common nevi.
- X inactivation analysis using the HUMARA assay in female nevi and melanomas.
- Assessment for microsatellite instability at examined loci.
Main Results:
- No chromosomal deletions were observed in benign nevi.
- Skewed X inactivation, indicating monoclonality, was found in 80% of benign nevi and 92% of melanomas.
- Loss of heterozygosity at HUMARA was detected in 5% of nevi and 33% of melanomas.
- Low-level microsatellite instability was noted in one nevus.
Conclusions:
- Common melanocytic nevi appear to arise from clonal proliferation.
- Benign nevi do not share the characteristic chromosomal deletions of melanoma.
- Skewed X inactivation is common in both benign nevi and melanoma, suggesting early clonal events.
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