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Genetic Aspects of Conjunctival Melanoma: A Review
Emily Chang1, Hakan Demirci1, F Yesim Demirci2
1Department of Ophthalmology and Visual Sciences, University of Michigan, Ann Arbor, MI 48105, USA.
Abstract:
Conjunctival melanoma (CM) is a rare but aggressive cancer. Over the past decade, molecular studies using rapidly advancing technologies have increasingly improved our understanding of CM genetics. CMs are mainly characterized by dysregulated MAPK and PI3K/AKT/mTOR pathways, driven by commonly mutated (BRAF, NRAS, NF1) or less commonly mutated (KIT, PTEN) genes. Another group of genes frequently mutated in CMs include TERT and ATRX, with known roles in telomere maintenance and chromatin remodeling/epigenetic regulation. Uveal melanoma-related genes (BAP1, SF3B1, GNAQ/11) can also be mutated in CMs, albeit infrequently. Additional CM-related mutated genes have increasingly been identified using more comprehensive genetic analyses, awaiting further confirmation in additional/larger studies. As a tumor arising in a partly sun-exposed mucosal tissue, CM exhibits a distinct genomic profile, including the frequent presence of an ultraviolet (UV) signature (and high mutational load) and also the common occurrence of large structural variations (distributed across the genome) in addition to specific gene mutations. The knowledge gained from CM genetic studies to date has led to new therapeutic avenues, including the use of targeted and/or immuno-therapies with promising outcomes in several cases. Accordingly, the implementation of tumor genetic testing into the routine clinical care of CM patients holds promise to further improve and personalize their treatments. Likewise, a growing knowledge of poor prognosis-associated genetic changes in CMs (NRAS, TERT, and uveal melanoma signature mutations and chromosome 10q deletions) may ultimately guide future strategies for prognostic testing to further improve clinical outcomes (by tailoring surveillance and considering prophylactic treatments in patients with high-risk primary tumors).
Insights
Conjunctival melanoma (CM) genetics reveal key mutations in MAPK and PI3K pathways. Understanding these genetic drivers, including UV signatures, aids in developing targeted therapies and personalized treatment strategies for this rare cancer.
Area of Science:
- Oncology
- Genetics
- Ophthalmology
Background:
- Conjunctival melanoma (CM) is a rare and aggressive ocular cancer.
- Recent advancements in molecular technologies have significantly enhanced our understanding of CM genetics.
Purpose of the Study:
- To elucidate the genetic landscape of conjunctival melanoma.
- To identify key mutations and genomic alterations driving CM development and progression.
- To explore the implications of genetic findings for therapeutic strategies and prognostic assessment.
Main Methods:
- Comprehensive genomic analyses of CM tumors.
- Identification and characterization of frequently mutated genes (e.g., BRAF, NRAS, NF1, TERT, ATRX, KIT, PTEN).
- Analysis of pathway dysregulation (MAPK, PI3K/AKT/mTOR) and genomic features (UV signature, structural variations).
Main Results:
- CM is characterized by dysregulated MAPK and PI3K/AKT/mTOR pathways, driven by mutations in genes like BRAF, NRAS, NF1, TERT, and ATRX.
- Distinct genomic profile includes ultraviolet (UV) signatures, high mutational load, and frequent large structural variations.
- Identification of uveal melanoma-related gene mutations (BAP1, SF3B1, GNAQ/11) and poor prognosis markers (NRAS, TERT, chromosome 10q deletions).
Conclusions:
- Genetic insights into CM pave the way for targeted and immunotherapies, showing promising outcomes.
- Integrating tumor genetic testing into routine clinical care can personalize CM patient treatment.
- Knowledge of prognostic genetic markers may guide future strategies for improved surveillance and prophylactic treatments.
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