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Secondary Somatic Mutations in G-Protein-Related Pathways and Mutation Signatures in Uveal Melanoma
Francesca Piaggio1, Veronica Tozzo2, Cinzia Bernardi3
1Tumor Epigenetics; IRCCS Ospedale Policlinico San Martino, 16132 Genova, Italy. francesca.piaggio@hsanmartino.it.
Background:
Uveal melanoma (UM), a rare cancer of the eye, is characterized by initiating mutations in the genes G-protein subunit alpha Q (GNAQ), G-protein subunit alpha 11 (GNA11), cysteinyl leukotriene receptor 2 (CYSLTR2), and phospholipase C beta 4 (PLCB4) and by metastasis-promoting mutations in the genes splicing factor 3B1 (SF3B1), serine and arginine rich splicing factor 2 (SRSF2), and BRCA1-associated protein 1 (BAP1). Here, we tested the hypothesis that additional mutations, though occurring in only a few cases ("secondary drivers"), might influence tumor development.
Methods:
We analyzed all the 4125 mutations detected in exome sequencing datasets, comprising a total of 139 Ums, and tested the enrichment of secondary drivers in Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways that also contained the initiating mutations. We searched for additional mutations in the putative secondary driver gene protein tyrosine kinase 2 beta (PTK2B) and we developed new mutational signatures that explain the mutational pattern observed in UM.
Results:
Secondary drivers were significantly enriched in KEGG pathways that also contained GNAQ and GNA11, such as the calcium-signaling pathway. Many of the secondary drivers were known cancer driver genes and were strongly associated with metastasis and survival. We identified additional mutations in PTK2B. Sparse dictionary learning allowed for the identification of mutational signatures specific for UM.
Conclusions:
A considerable part of rare mutations that occur in addition to known driver mutations are likely to affect tumor development and progression.
Insights
Rare mutations, termed "secondary drivers," significantly impact uveal melanoma (UM) development and metastasis. These findings highlight the role of additional genetic alterations beyond known drivers in eye cancer progression.
Area of Science:
- Oncology
- Genetics
- Ophthalmology
Background:
- Uveal melanoma (UM) is a rare eye cancer.
- UM is characterized by specific initiating and metastasis-promoting gene mutations.
- The role of less common, secondary driver mutations in UM development was investigated.
Purpose of the Study:
- To test the hypothesis that secondary driver mutations influence UM tumor development.
- To identify novel mutational patterns and drivers in UM.
- To explore the association of secondary drivers with known UM pathways and clinical outcomes.
Main Methods:
- Exome sequencing data from 139 UM cases were analyzed.
- Mutations were assessed for enrichment in KEGG pathways containing known UM driver genes.
- New mutational signatures were developed using sparse dictionary learning.
Main Results:
- Secondary drivers were significantly enriched in KEGG pathways associated with GNAQ and GNA11 mutations, including calcium signaling.
- Many secondary drivers are known cancer genes linked to metastasis and survival.
- Additional mutations in PTK2B were identified, and UM-specific mutational signatures were established.
Conclusions:
- A significant portion of rare mutations, in addition to known drivers, likely influences UM tumor development and progression.
- Understanding secondary drivers offers new insights into UM pathogenesis.
- This research contributes to identifying potential therapeutic targets for uveal melanoma.
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08:18Analysis of Lymph Node Volume by Ultra-High-Frequency Ultrasound Imaging in the Braf/Pten Genetically Engineered Mouse Model of Melanoma
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