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

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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