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Updated: Jul 5, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Akt3 and mutant V600E B-Raf cooperate to promote early melanoma development
Mitchell Cheung1, Arati Sharma, SubbaRao V Madhunapantula
1Department of Pharmacology, The Pennsylvania State University College of Medicine, Hershey, PA 17033, USA.
Abstract:
B-Raf is the most mutated gene in melanoma; however, the mechanism through which it promotes early melanomas remains uncertain. Most nevi contain activated (V600E)B-Raf but few develop into melanoma, and expression in melanocytes is inhibitory with low protein levels present in surviving cells, suggesting unknown cooperative oncogenic events are necessary for melanoma development. Because many melanomas have (V600E)B-Raf and active Akt3, it is possible that these proteins cooperatively facilitate melanocyte transformation. In this study, Akt3 is shown to phosphorylate (V600E)B-Raf to lower its activity as well as that of the downstream mitogen-activated protein kinase (MAPK) pathway to levels promoting early melanoma development. Expression of active Akt3 in early melanoma cells containing (V600E)B-Raf reduced MAPK signaling and promoted anchorage-independent growth. Furthermore, expression of both (V600E)B-Raf and active Akt3 in melanocytes promoted a transformed phenotype. Mechanistically, aberrant Akt3 activity in early melanomas serves to phosphorylate Ser(364) and Ser(428) on (V600E)B-Raf to reduce activity of (V600E)B-Raf to levels that promote rather than inhibit proliferation, which aids melanocytic transformation. Inhibition of (V600E)B-Raf or Akt3 in advanced melanoma cells in which both pathways were active reduced anchorage-independent growth and tumor development in a cooperatively acting manner. Inhibition of Akt3 alone in these cells led to increased MAPK signaling. In summary, these results suggest that activating B-Raf mutations initially promote nevi development, but the resulting high, intense activation of the MAPK pathway inhibits further tumor progression requiring Akt3 activation to bypass this barrier and aid melanoma development.
Insights
Activating B-Raf mutations promote nevi, but Akt3 activation is crucial for melanoma development by modulating B-Raf and MAPK signaling, enabling cell transformation and tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Dermatology
Background:
- The BRAF gene is frequently mutated in melanoma, but the precise mechanisms driving early melanoma development remain unclear.
- While BRAF mutations are common in nevi, most do not progress to melanoma, suggesting cooperative oncogenic events are necessary.
- Many melanomas exhibit both BRAF (V600E) mutations and active Akt3, hinting at a potential synergistic role in transformation.
Purpose of the Study:
- To investigate the cooperative roles of BRAF (V600E) and Akt3 in melanocyte transformation and melanoma development.
- To elucidate the molecular mechanisms by which Akt3 influences BRAF activity and downstream signaling pathways.
Main Methods:
- Investigated the effects of Akt3 on BRAF (V600E) activity and mitogen-activated protein kinase (MAPK) signaling in melanocytes and melanoma cells.
- Utilized cell culture models to assess anchorage-independent growth and transformed phenotypes.
- Examined the impact of inhibiting BRAF or Akt3 in advanced melanoma models.
Main Results:
- Akt3 phosphorylates BRAF (V600E), reducing its activity and that of the MAPK pathway to levels that promote early melanoma development.
- Expression of both BRAF (V600E) and active Akt3 induced a transformed phenotype in melanocytes.
- Inhibition of either BRAF or Akt3 in advanced melanoma cooperatively reduced tumor growth, while Akt3 inhibition alone increased MAPK signaling.
Conclusions:
- BRAF mutations initiate nevi, but excessive MAPK signaling creates a barrier to progression.
- Akt3 activation is essential to overcome this barrier by reducing MAPK signaling, thereby facilitating melanoma development.
- Targeting both BRAF and Akt3 may be a viable strategy for treating advanced melanoma.
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