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Published on: January 25, 2015
Novel therapeutic strategies and targets in advanced uveal melanoma
Vivian Chua1, Andrew E Aplin1,2
1Department of Cancer Biology, Thomas Jefferson University.
Purpose Of Review:
Currently, there are no U.S. Food and Drug Administration-approved or effective treatment options for advanced-stage uveal melanoma. In this article, we focus on therapeutic targets in pathways/mechanisms associated with common mutations in uveal melanoma. We review the challenges associated with targeting of these pathways and novel treatment strategies.
Recent Findings:
Common mutations that promote uveal melanoma initiation and progression include alterations in G protein subunit alpha q/11 (GNAQ/GNA11) and breast cancer gene 1-associated protein 1 (BAP1). Mutant GNAQ/GNA11 induces constitutive activation of tumorigenic pathways such as extracellular signal-regulated kinase (ERK)1/2 and yes-associated protein. Inhibition of mitogen-activated protein kinase kinase (MEK) downstream of ERK1/2, however, was shown in trials to have limited clinical benefit. Recent reports suggested that combination therapies of MEK inhibition and modulators of mechanisms of drug resistance may improve tumor responses to MEK inhibitors. BAP1 has been shown to be involved in modulating chromatin dynamics and deubiquitination of proteins. Hence, epigenetic inhibitors are being investigated in BAP1 mutant uveal melanoma. However, other functions of BAP1, such as in DNA damage repair and cell cycle regulation, indicate additional targets for treatment of BAP1 mutant uveal melanoma. In addition, the frequent delayed development of uveal melanoma macrometastases is likely due to cellular dormancy mechanisms. Nuclear receptor subfamily 2, group F, member 1 and transforming growth factor beta 2 were among factors that have been shown in other cancers to induce dormant phenotypes.
Summary:
Findings from studies in uveal melanoma and in other cancers provide evidence for potential strategies that may be tested preclinically and clinically in advanced-stage uveal melanoma to improve treatment outcome and overall survival of patients.
Insights
No effective treatments exist for advanced uveal melanoma. Research focuses on targeting common mutations like GNAQ/GNA11 and BAP1, exploring combination therapies and epigenetic inhibitors for improved patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Uveal melanoma lacks FDA-approved treatments for advanced stages.
- Common mutations driving uveal melanoma include GNAQ/GNA11 and BAP1.
- These mutations activate key oncogenic pathways.
Purpose of the Study:
- To review therapeutic targets in pathways associated with common uveal melanoma mutations.
- To discuss challenges in targeting these pathways.
- To explore novel treatment strategies for advanced uveal melanoma.
Main Methods:
- Review of current literature on uveal melanoma mutations and therapeutic targets.
- Analysis of preclinical and clinical trial data for MEK inhibitors and epigenetic modifiers.
- Identification of potential targets based on BAP1 functions and dormancy mechanisms.
Main Results:
- MEK inhibition alone showed limited clinical benefit, suggesting combination therapies are needed.
- Epigenetic inhibitors are being investigated for BAP1 mutant uveal melanoma.
- BAP1's role in DNA repair and cell cycle regulation suggests additional therapeutic targets.
- Dormancy mechanisms involving NR2F1 and TGFB2 may contribute to delayed metastasis.
Conclusions:
- Targeting GNAQ/GNA11 and BAP1 pathways offers potential therapeutic strategies.
- Combination therapies and epigenetic modulators show promise for uveal melanoma treatment.
- Further research into BAP1 functions and dormancy mechanisms is warranted to improve patient survival.
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