Novel insights into the BAP1-inactivated melanocytic tumor

Michele Donati1,2, Petr Martinek3, Petr Steiner3

  • 1Department of Pathology, University Hospital Campus Bio-Medico, Rome, Italy.

Insights

BAP1-inactivated melanocytic tumors (BIMTs) show diverse morphology and frequent BRAF mutations. These tumors may progress from conventional nevi, with rare metastasis observed.

Area of Science:

  • Oncology
  • Dermatopathology
  • Cancer Genetics

Background:

  • BAP1-inactivated melanocytic tumor (BIMT) is a distinct neoplasm characterized by epithelioid morphology and BAP1 tumor suppressor gene inactivation.
  • BIMTs can arise sporadically or as part of a hereditary cancer syndrome linked to BAP1 germline mutations.
  • These tumors are often classified as combined melanocytic nevi due to the frequent presence of conventional nevus remnants.

Purpose of the Study:

  • To comprehensively analyze the clinicopathological and molecular features of BAP1-inactivated melanocytic tumors (BIMTs).
  • To identify novel mutations and understand the potential progression pathways of BIMTs.
  • To characterize the cytomorphological heterogeneity and identify underrecognized microscopic features.

Main Methods:

  • Histopathological examination of 50 BIMTs from 36 patients.
  • Somatic mutation analysis, including BRAF, RAF1, and BAP1.
  • Germline mutation analysis for BAP1.
  • Fluorescence in situ hybridization (FISH) for copy number changes.
  • Analysis of TERT promoter mutations.
  • Review of patient follow-up data for metastasis.

Main Results:

  • Most BIMTs exhibited epithelioid melanocytes with significant cytomorphological heterogeneity, including multinucleated giant cells and unique nuclear features.
  • BRAF mutations were identified in 24/26 lesions, with RAF1 fusions in the remaining two.
  • BAP1 mutations (biallelic or single allele) and heterozygous loss were frequently observed.
  • Six novel BAP1 mutations were discovered, and BAP1 germline mutations were present in five patients.
  • One tumor showed RREB1 and MYC gene amplification; tetraploidy was identified in 5/21 BIMTs.
  • Only one of 21 patients with follow-up developed locoregional lymph node metastasis.

Conclusions:

  • BIMTs display remarkable morphological diversity and are molecularly driven by BAP1 inactivation and often BRAF mutations.
  • The findings support a model of BIMT progression from conventional, BRAF-mutated nevi.
  • Certain morphological features and molecular alterations suggest complex pathophysiological mechanisms requiring further investigation.

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