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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
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.
Abstract:
BAP1-inactivated melanocytic tumor (BIMT) is a group of melanocytic neoplasms with epithelioid cell morphology molecularly characterized by the loss of function of BAP1, a tumor suppressor gene located on chromosome 3p21, and a mutually exclusive mitogenic driver mutation, more commonly BRAF. BIMTs can occur as a sporadic lesion or, less commonly, in the setting of an autosomal dominant cancer susceptibility syndrome caused by a BAP1 germline inactivating mutation. Owing to the frequent identification of remnants of a conventional nevus, BIMTs are currently classified within the group of combined melanocytic nevi. "Pure" lesions can also be observed. We studied 50 BIMTs from 36 patients. Most lesions were composed of epithelioid melanocytes of varying size and shapes, resulting extreme cytomorphological heterogeneity. Several distinctive morphological variants of multinucleated/giant cells were identified. Some hitherto underrecognized microscopic features, especially regarding nuclear characteristics included nuclear blebbing, nuclear budding, micronuclei, shadow nuclei, peculiar cytoplasmic projections (ant-bear cells) often containing micronuclei and cell-in-cell structures (entosis). In addition, there were mixed nests of conventional and BAP1-inactivated melanocytes and squeezed remnants of the original nevus. Of the 26 lesions studied, 24 yielded a BRAF mutation, while in the remaining two cases there was a RAF1 fusion. BAP1 biallelic and singe allele mutations were found in 4/22 and 16/24 neoplasms, respectively. In five patients, there was a BAP1 germline mutation. Six novel, previously unreported BAP1 mutations have been identified. BAP1 heterozygous loss was detected in 11/22 lesions. Fluorescence in situ hybridization for copy number changes revealed a related amplification of both RREB1 and MYC genes in one tumor, whereas the remaining 20 lesions studied were negative; no TERT-p mutation was found in 14 studied neoplasms. Tetraploidy was identified in 5/21 BIMTs. Of the 21 patients with available follow-up, only one child had a locoregional lymph node metastasis. Our results support a progression of BIMTs from a conventional BRAF mutated in which the original nevus is gradually replaced by epithelioid BAP1-inactivated melanocytes. Some features suggest more complex underlying pathophysiological events that need to be elucidated.
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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