Related Experiment Video
Updated: Apr 5, 2026

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Targeted inhibition of metastatic melanoma through interference with Pin1-FOXM1 signaling
F Kruiswijk1, S C Hasenfuss1, R Sivapatham2
1Center of Molecular Medicine, Molecular Cancer Research, University Medical Center, Utrecht, The Netherlands.
Abstract:
Melanoma is the most lethal form of skin cancer and successful treatment of metastatic melanoma remains challenging. BRAF/MEK inhibitors only show a temporary benefit due to rapid occurrence of resistance, whereas immunotherapy is mainly effective in selected subsets of patients. Thus, there is a need to identify new targets to improve treatment of metastatic melanoma. To this extent, we searched for markers that are elevated in melanoma and are under regulation of potentially druggable enzymes. Here, we show that the pro-proliferative transcription factor FOXM1 is elevated and activated in malignant melanoma. FOXM1 activity correlated with expression of the enzyme Pin1, which we found to be indicative of a poor prognosis. In functional experiments, Pin1 proved to be a main regulator of FOXM1 activity through MEK-dependent physical regulation during the cell cycle. The Pin1-FOXM1 interaction was enhanced by BRAF(V600E), the driver oncogene in the majority of melanomas, and in extrapolation of the correlation data, interference with\ Pin1 in BRAF(V600E)-driven metastatic melanoma cells impaired both FOXM1 activity and cell survival. Importantly, cell-permeable Pin1-FOXM1-blocking peptides repressed the proliferation of melanoma cells in freshly isolated human metastatic melanoma ex vivo and in three-dimensional-cultured patient-derived melanoids. When combined with the BRAF(V600E)-inhibitor PLX4032 a robust repression in melanoid viability was obtained, establishing preclinical value of patient-derived melanoids for prognostic use of drug sensitivity and further underscoring the beneficial effect of Pin1-FOXM1 inhibitory peptides as anti-melanoma drugs. These proof-of-concept results provide a starting point for development of therapeutic Pin1-FOXM1 inhibitors to target metastatic melanoma.
Insights
Pin1 enzyme regulates the pro-proliferative transcription factor FOXM1 in melanoma. Blocking this Pin1-FOXM1 interaction with peptides inhibits melanoma cell growth, offering a new therapeutic strategy for metastatic melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Metastatic melanoma treatment is challenging due to resistance to BRAF/MEK inhibitors and limited efficacy of immunotherapy.
- There is a critical need for novel therapeutic targets to improve outcomes for metastatic melanoma patients.
- Identifying markers elevated in melanoma and regulated by druggable enzymes is a key research area.
Purpose of the Study:
- To investigate the role of the pro-proliferative transcription factor FOXM1 and its regulator Pin1 in melanoma.
- To explore the therapeutic potential of targeting the Pin1-FOXM1 interaction in metastatic melanoma.
Main Methods:
- Analysis of FOXM1 and Pin1 expression and activity in melanoma samples.
- Functional experiments to elucidate the Pin1-FOXM1 regulatory mechanism.
- In vitro and ex vivo studies using melanoma cell lines, patient-derived melanoids, and BRAF inhibitors.
Main Results:
- FOXM1 is elevated and activated in malignant melanoma, correlating with Pin1 expression and poor prognosis.
- Pin1 physically regulates FOXM1 activity in a cell-cycle-dependent manner, enhanced by BRAF(V600E).
- Pin1-FOXM1 blocking peptides inhibited melanoma cell proliferation ex vivo and in patient-derived melanoids, with enhanced efficacy when combined with a BRAF inhibitor.
Conclusions:
- The Pin1-FOXM1 axis is a critical regulator of melanoma cell proliferation and survival.
- Pin1-FOXM1 inhibitory peptides demonstrate preclinical efficacy against metastatic melanoma.
- Targeting the Pin1-FOXM1 interaction represents a promising therapeutic strategy for metastatic melanoma.

