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Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
PD-L1 up-regulation in melanoma increases disease aggressiveness and is mediated through miR-17-5p
Valentina Audrito1,2, Sara Serra1,2, Aureliano Stingi1,2
1Human Genetics Foundation (HuGeF), Turin, Italy.
Abstract:
PD-L1 is expressed by a subset of patients with metastatic melanoma (MM) with an unfavorable outcome. Its expression is increased in cells resistant to BRAF or MEK inhibitors (BRAFi or MEKi). However, the function and regulation of expression of PD-L1 remain incompletely understood.After generating BRAFi- and MEKi-resistant cell lines, we observed marked up-regulation of PD-L1 expression. These cells were characterized by a common gene expression profile with up-regulation of genes involved in cell movement. Consistently, in vitro they showed significantly increased invasive properties. This phenotype was controlled in part by PD-L1, as determined after silencing the molecule. Up-regulation of PD-L1 was due to post-transcriptional events controlled by miR-17-5p, which showed an inverse correlation with PD-L1 mRNA. Direct binding between miR-17-5p and the 3'-UTR of PD-L1 mRNA was demonstrated using luciferase reporter assays.In a cohort of 80 BRAF-mutated MM patients treated with BRAFi or MEKi, constitutive expression of PD-L1 in the absence of immune infiltrate, defined the patient subset with the worst prognosis. Furthermore, PD-L1 expression increased in tissue biopsies after the metastatic lesions became resistant to BRAFi or MEKi. Lastly, plasmatic miR-17-5p levels were higher in patients with PD-L1+ than PD-L1- lesions.In conclusion, our findings indicate that PD-L1 expression induces a more aggressive behavior in melanoma cells. We also show that PD-L1 up-regulation in BRAFi or MEKi-resistant cells is partly due to post-transcriptional mechanisms that involve miR-17-5p, suggesting that miR-17-5p may be used as a marker of PD-L1 expression by metastatic lesions and ultimately a predictor of responses to BRAFi or MEKi.
Insights
Programmed death-ligand 1 (PD-L1) expression in metastatic melanoma (MM) correlates with poor prognosis and resistance to targeted therapies. MicroRNA-17-5p (miR-17-5p) regulates PD-L1, potentially serving as a biomarker for treatment response.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- Programmed death-ligand 1 (PD-L1) expression is linked to poor outcomes in metastatic melanoma (MM).
- PD-L1 levels increase in melanoma cells resistant to BRAF inhibitors (BRAFi) or MEK inhibitors (MEKi).
- The precise function and regulation of PD-L1 in this context are not fully understood.
Purpose of the Study:
- To investigate the role and regulation of PD-L1 in BRAFi/MEKi-resistant melanoma.
- To explore the potential of PD-L1 and miR-17-5p as biomarkers for treatment response in MM.
Main Methods:
- Generated BRAFi- and MEKi-resistant melanoma cell lines.
- Analyzed gene expression profiles, cell invasion, and PD-L1 silencing.
- Investigated post-transcriptional regulation of PD-L1 by miR-17-5p using luciferase assays.
- Assessed PD-L1 and miR-17-5p levels in a cohort of 80 BRAF-mutated MM patients.
Main Results:
- Resistant melanoma cells exhibited increased PD-L1 expression and invasive properties, partly mediated by PD-L1.
- PD-L1 up-regulation was linked to post-transcriptional regulation by miR-17-5p, with an inverse correlation observed.
- In patients, constitutive PD-L1 expression predicted worse prognosis, and PD-L1 levels rose upon acquired resistance.
- Higher plasma miR-17-5p levels correlated with PD-L1-positive lesions.
Conclusions:
- PD-L1 expression promotes a more aggressive phenotype in melanoma cells.
- PD-L1 up-regulation in resistant melanoma involves post-transcriptional mechanisms regulated by miR-17-5p.
- miR-17-5p may serve as a biomarker for PD-L1 expression and a predictor of response to BRAFi/MEKi therapy in MM.

