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Updated: Aug 10, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Characterisation and outcome of RAC1 mutated melanoma
Georg C Lodde1, Philipp Jansen2, Rudolf Herbst3
1Department of Dermatology, Venereology and Allergology, University Hospital Essen, Essen, Germany.
Background:
Activating hot spot R29S mutations in RAC1, a small GTPase influencing several cellular processes including cell proliferation and cytoskeleton rearrangement, have been reported in up to 9% of sun-exposed melanomas. Clinical characteristics and treatment implications of RAC1 mutations in melanoma remain unclear.
Methods:
We investigated the largest set (n = 64) of RAC1 mutated melanoma patients reported to date, including a retrospective single institution cohort (n = 34) from the University Hospital Essen and a prospective multicentre cohort (n = 30) from the translational study Tissue Registry in Melanoma (TRIM; CA209-578), for patient and tumour characteristics as well as therapy outcomes.
Results:
From 3037 sequenced melanoma samples screened RAC1 mutations occurred in ∼2% of samples (64/3037). The most common RAC1 mutation was P29S (95%, 61/64). The majority of tumours had co-occuring MAP kinase mutations (88%, 56/64); mostly activating NRAS (47%, 30/64) mutations, followed by activating BRAF (28%, 18/64) and NF1 (25%, 16/64) mutations. RAC1 mutated melanomas were almost exclusively of cutaneous origin (84%, 54/64) or of unknown primary (MUP, 14%, 9/64). C > T alterations were the most frequent mutation type identified demonstrating a UV-signature for RAC1 mutated melanoma. Most patients with unresectable disease (39) received immune checkpoint inhibitors (ICI) (77%, 30/39). Objective response rate of first-line treatment in patients with stage III/IV disease was 21%; median overall survival was 47.8 months.
Conclusions:
RAC1 mutated melanomas are rare, mostly of cutaneous origin and frequently harbour concomitant MAP kinase mutations, particularly in NRAS. Patients with advanced disease benefit from systemic treatment with ICI.
Insights
RAC1 mutations are found in rare melanomas, often linked with MAP kinase mutations. Advanced melanoma patients show benefit from immune checkpoint inhibitors (ICI) treatment.
Area of Science:
- Oncology
- Dermatology
- Genetics
Background:
- Activating RAC1 (Ras-related C3 botulinum toxin substrate 1) mutations, specifically R29S, are found in up to 9% of sun-exposed melanomas.
- These mutations influence cell proliferation and cytoskeleton rearrangement, but their clinical implications in melanoma are not well understood.
Purpose of the Study:
- To investigate the clinical characteristics and treatment outcomes of patients with RAC1-mutated melanoma.
- To analyze the largest cohort of RAC1-mutated melanoma patients reported to date.
Main Methods:
- A combined cohort of 64 RAC1-mutated melanoma patients was analyzed.
- Data included a retrospective single institution cohort (n=34) and a prospective multicenter cohort (n=30).
- Patient and tumor characteristics, alongside therapy outcomes, were evaluated.
Main Results:
- RAC1 mutations were identified in approximately 2% of 3037 sequenced melanoma samples.
- The P29S mutation was the most common RAC1 mutation (95%).
- Most RAC1-mutated melanomas (88%) had co-occurring MAP kinase mutations (NRAS, BRAF, NF1) and were of cutaneous origin (84%).
- UV-signature C>T alterations were frequent.
- For advanced disease, immune checkpoint inhibitors (ICI) showed a 21% objective response rate and a median overall survival of 47.8 months.
Conclusions:
- RAC1-mutated melanomas are rare, predominantly cutaneous, and often harbor concurrent MAP kinase mutations, especially NRAS.
- Patients with advanced RAC1-mutated melanoma benefit from systemic immune checkpoint inhibitor therapy.
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