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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
CDKN2B Loss Promotes Progression from Benign Melanocytic Nevus to Melanoma
Andrew S McNeal1, Kevin Liu1, Vihang Nakhate1
1Department of Dermatology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.
Unlabelled:
Deletion of the entire CDKN2B-CDKN2A gene cluster is among the most common genetic events in cancer. The tumor-promoting effects are generally attributed to loss of CDKN2A-encoded p16 and p14ARF tumor suppressors. The degree to which the associated CDKN2B-encoded p15 loss contributes to human tumorigenesis is unclear. Here, we show that CDKN2B is highly upregulated in benign melanocytic nevi, contributes to maintaining nevus melanocytes in a growth-arrested premalignant state, and is commonly lost in melanoma. Using primary melanocytes isolated directly from freshly excised human nevi naturally expressing the common BRAF(V600E)-activating mutation, nevi progressing to melanoma, and normal melanocytes engineered to inducibly express BRAF(V600E), we show that BRAF activation results in reversible, TGFβ-dependent, p15 induction that halts proliferation. Furthermore, we engineer human skin grafts containing nevus-derived melanocytes to establish a new, architecturally faithful, in vivo melanoma model, and demonstrate that p15 loss promotes the transition from benign nevus to melanoma.
Significance:
Although BRAF(V600E) mutations cause melanocytes to initially proliferate into benign moles, mechanisms responsible for their eventual growth arrest are unknown. Using melanocytes from human moles, we show that BRAF activation leads to a CDKN2B induction that is critical for restraining BRAF oncogenic effects, and when lost, contributes to melanoma.
Insights
Loss of the CDKN2B gene, encoding p15, is crucial for benign moles to progress into melanoma. BRAF activation initially induces p15, halting melanocyte proliferation and preventing tumor growth.
Area of Science:
- Oncology
- Genetics
- Dermatology
Background:
- The CDKN2B-CDKN2A gene cluster deletion is common in cancer, with loss of CDKN2A-encoded p16 and p14ARF linked to tumor promotion.
- The specific role of CDKN2B-encoded p15 loss in human tumorigenesis, particularly melanoma, remains unclear.
Purpose of the Study:
- To investigate the role of CDKN2B (p15) in melanoma development.
- To understand the mechanisms by which benign nevi transition to melanoma.
Main Methods:
- Analysis of primary melanocytes from human nevi and melanoma.
- Engineering of melanocytes to inducibly express BRAF(V600E).
- Development of an in vivo human skin graft melanoma model.
Main Results:
- CDKN2B (p15) is upregulated in benign nevi, maintaining melanocytes in a growth-arrested state.
- BRAF activation induces reversible, TGFβ-dependent p15 expression, halting proliferation.
- Loss of p15 expression promotes the transition from benign nevus to melanoma in vivo.
Conclusions:
- BRAF(V600E) mutations initially drive melanocyte proliferation, forming benign moles.
- CDKN2B (p15) induction by BRAF activation is critical for restraining oncogenic effects and preventing melanoma progression.
- Loss of p15 contributes significantly to melanoma development.
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