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Published on: June 30, 2023
Endothelin receptor B inhibition triggers apoptosis and enhances angiogenesis in melanomas
Ronit Lahav1, Mario-Luca Suvà, Donata Rimoldi
1Division of Experimental Pathology, Institut Universitaire de Pathologie Université de Lausanne, Lausanne, Switzerland. ronit.lahav@melcure.com
Abstract:
Endothelin receptor B (ETRB or EDNRB) is overexpressed in most human melanomas and is proposed to provide a marker of melanoma progression. We have shown previously that inhibition of ETRB leads to increased human melanoma cell death in vitro and in vivo, resulting in shrinkage of tumors grown in immunocompromised mice. In the present work, we analyzed the effects of ETRB inhibition on 10 human melanoma cell lines derived from tumors at distinct stages of progression. Our observations suggest that the ETRB antagonist BQ788 induces apoptosis most effectively in metastatic melanoma cells. Microarray analysis shows that BQ788 treatment leads to a reduction in the expression of the survival factor BCL-2A1 and the DNA repair factor poly(ADP-ribose) polymerase 3 that is more pronounced in cells derived from metastatic than primary melanoma. Decreased cell viability was observed to correlate with reduction in ETRB expression, and reduction in ETRB protein levels by small interfering RNA led to an increase in cell death. Interestingly, reduction of ETRB expression by BQ788 was accompanied by a strong induction of VEGF expression and repression of the angiogenic suppressor gravin. These changes in gene expression correlated with increased angiogenesis in tumors injected with ETRB antagonist in vivo. Taken together, our observations suggest that ETRB may provide a potential therapeutic target in high-grade melanomas and identify candidate pathways that may be implicated in the regulation of cell survival and tumor progression associated with ETRB signaling.
Insights
Endothelin receptor B (ETRB) inhibition effectively triggers melanoma cell death, particularly in metastatic cells. This suggests ETRB is a promising therapeutic target for advanced melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Endothelin receptor B (ETRB) is overexpressed in human melanomas, potentially marking disease progression.
- Previous studies demonstrated ETRB inhibition increases melanoma cell death and reduces tumor size in vivo.
Purpose of the Study:
- To investigate the effects of ETRB inhibition on melanoma cells from various progression stages.
- To identify molecular mechanisms underlying ETRB's role in melanoma survival and progression.
Main Methods:
- Treatment of 10 human melanoma cell lines with the ETRB antagonist BQ788.
- Microarray analysis to assess gene expression changes.
- Small interfering RNA (siRNA) to reduce ETRB protein levels.
Main Results:
- BQ788 induced apoptosis most effectively in metastatic melanoma cells.
- BQ788 reduced expression of survival (BCL-2A1) and DNA repair (PARP3) factors, more so in metastatic cells.
- ETRB reduction correlated with decreased cell viability and increased cell death.
- ETRB inhibition upregulated VEGF and downregulated gravin, leading to increased angiogenesis in vivo.
Conclusions:
- ETRB is a potential therapeutic target for high-grade melanomas.
- ETRB signaling influences melanoma cell survival and tumor progression through pathways involving VEGF and gravin.
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