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Updated: Mar 26, 2026

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
Melanoma Expressed-CD70 Is Regulated by RhoA and MAPK Pathways without Affecting Vemurafenib Treatment Activity
Christine Pich1,2, Iotefa Teiti1,2, Guillaume Sarrabayrouse1,2
1INSERM UMR 1037, CRCT, Toulouse FR-31037, France.
Abstract:
CD70 is a costimulatory molecule member of the Tumor Necrosis Factor family that is expressed on activated immune cells. Its ectopic expression has been described in several types of cancer cells including lymphomas, renal cell carcinomas and glioblastomas. We have recently described its expression in a part of tumor cells from the vast majority of melanoma biopsies and human melanoma cell lines, and found that CD70 expression decreased over time as the disease progressed. Here, we show that RhoA, BRAF and Mitogen Activating Protein Kinase pathways are involved in the positive transcriptional regulation of CD70 expression in melanomas. Interestingly, the clinical inhibitor of the common BRAF V600E/D variants, Vemurafenib (PLX-4032), which is currently used to treat melanoma patients with BRAF V600E/D-mutated metastatic melanomas, decreased CD70 expression in human CD70+ melanoma cell lines. This decrease was seen in melanoma cells both with and without the BRAFV600E/D mutation, although was less efficient in those lacking the mutation. But interestingly, by silencing CD70 in CD70+ melanoma cell lines we show that PLX-4032-induced melanoma cell killing and its inhibitory effect on MAPK pathway activation are unaffected by CD70 expression. Consequently, our work demonstrates that CD70 ectopic expression in melanomas is not a valuable biomarker to predict tumor cells sensitivity to BRAF V600 inhibitors.
Insights
CD70 is ectopically expressed in melanoma, but its presence does not predict patient response to BRAF V600 inhibitors like Vemurafenib. This study reveals CD70
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- CD70, a TNF family member, is expressed on immune cells and ectopically in various cancers.
- CD70 expression in melanoma decreases with disease progression.
- RhoA, BRAF, and MAPK pathways regulate CD70 transcription in melanoma.
Purpose of the Study:
- To investigate the role of CD70 in melanoma.
- To determine if CD70 expression predicts sensitivity to BRAF V600 inhibitors.
- To elucidate the regulatory pathways of CD70 in melanoma.
Main Methods:
- Analysis of CD70 expression in melanoma biopsies and cell lines.
- Investigating the effect of Vemurafenib (PLX-4032) on CD70 expression.
- Silencing CD70 in melanoma cell lines to assess its impact on drug response and MAPK pathway.
- Utilizing RhoA, BRAF, and MAPK pathway inhibitors.
Main Results:
- Vemurafenib decreases CD70 expression in BRAF V600 mutant and wild-type melanoma cells.
- CD70 silencing does not affect Vemurafenib-induced melanoma cell death or MAPK inhibition.
- CD70 expression is regulated by RhoA, BRAF, and MAPK pathways.
Conclusions:
- CD70 ectopic expression in melanoma is not a reliable biomarker for predicting sensitivity to BRAF V600 inhibitors.
- Vemurafenib's efficacy is independent of CD70 expression levels.
- Understanding CD70 regulation provides insights into melanoma biology.
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