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Published on: August 19, 2014
Chromosomal Aberrations Accumulate during Metastasis of Virus-Negative Merkel Cell Carcinoma
Tamsin J Robb1, Zoe Ward2, Pascalene Houseman2
1Department of Molecular Medicine and Pathology, Faculty of Medical and Health Sciences, University of Auckland, Auckland, New Zealand; Maurice Wilkins Centre for Molecular Biodiscovery, Hosted by the University of Auckland, Auckland, New Zealand.
Abstract:
Merkel cell carcinoma is a rare, aggressive skin tumor initiated by polyomavirus integration or UV light DNA damage. In New Zealand, there is a propensity toward the UV-driven form (31 of 107, 29% virus positive). Using archival formalin-fixed, paraffin-embedded tissues, we report targeted DNA sequencing covering 246 cancer genes on 71 tumor tissues and 38 nonmalignant tissues from 37 individuals, with 33 of 37 being negative for the virus. Somatic variants of New Zealand virus-negative Merkel cell carcinomas partially overlapped with those reported overseas, including TP53 variants in all tumors and RB1, LRP1B, NOTCH1, and EPHA3/7 variants each found in over half of the cohort. Variants in genes not analyzed or reported in previous studies were also found. Cataloging variants in TP53 and RB1 from published datasets revealed a broad distribution across these genes. Chr 1p gain and Chr 3p loss were identified in around 50% of New Zealand virus-negative Merkel cell carcinomas, and RB1 loss of heterozygosity was found in 90% of cases. Copy number variants accumulate in most metastases. Virus-negative Merkel cell carcinomas have complex combinations of somatic DNA-sequence variants and copy number variants. They likely carry the small genomic changes permissive for metastasis from early tumor development; however, chromosomal alterations may contribute to driving metastatic progression.
Insights
Genomic analysis of virus-negative Merkel cell carcinoma reveals frequent TP53 and RB1 variants, alongside chromosomal gains and losses. These genetic alterations likely contribute to the aggressive nature and metastatic potential of this rare skin cancer.
Area of Science:
- Oncology
- Genetics
- Dermatology
Background:
- Merkel cell carcinoma (MCC) is a rare, aggressive skin cancer.
- MCC can be initiated by polyomavirus or UV radiation DNA damage.
- New Zealand MCC cases show a higher prevalence of UV-driven tumors.
Purpose of the Study:
- To investigate the genomic landscape of virus-negative Merkel cell carcinoma in New Zealand.
- To identify somatic variants and copy number alterations in MCC tumors.
- To compare genomic findings with previously reported MCC datasets.
Main Methods:
- Targeted DNA sequencing of 246 cancer genes was performed on 71 MCC tumor tissues and 38 nonmalignant tissues.
- Archival formalin-fixed, paraffin-embedded tissues were utilized.
- Genomic data was analyzed for somatic variants and copy number changes.
Main Results:
- TP53 variants were present in all virus-negative MCC tumors.
- RB1, LRP1B, NOTCH1, and EPHA3/7 variants were found in over half of the cohort.
- Chromosomal alterations including Chr 1p gain, Chr 3p loss, and RB1 loss of heterozygosity were common, particularly in metastatic cases.
Conclusions:
- Virus-negative MCC exhibits complex genomic alterations, including frequent TP53 and RB1 variants and chromosomal instability.
- These genetic changes are likely present early in tumor development and contribute to metastatic progression.
- Further research into these genomic alterations may inform therapeutic strategies for MCC.
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