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Updated: Nov 7, 2025

Spatial and Temporal Control of Murine Melanoma Initiation from Mutant Melanocyte Stem Cells
Published on: June 7, 2019
NRF2 Enables EGFR Signaling in Melanoma Cells
Julia Katharina Charlotte Kreß1, Christina Jessen1, André Marquardt1,2
1Institute of Pathology, University of Würzburg, 97080 Würzburg, Germany.
Abstract:
Receptor tyrosine kinases (RTK) are rarely mutated in cutaneous melanoma, but the expression and activation of several RTK family members are associated with a proinvasive phenotype and therapy resistance. Epidermal growth factor receptor (EGFR) is a member of the RTK family and is only expressed in a subgroup of melanomas with poor prognosis. The insight into regulators of EGFR expression and activation is important for the understanding of the development of this malignant melanoma phenotype. Here, we describe that the transcription factor NRF2, the master regulator of the oxidative and electrophilic stress response, mediates the expression and activation of EGFR in melanoma by elevating the levels of EGFR as well as its ligands EGF and TGFα. ChIP sequencing data show that NRF2 directly binds to the promoter of EGF, which contains a canonical antioxidant response element. Accordingly, EGF is induced by oxidative stress and is also increased in lung adenocarcinoma and head and neck carcinoma with mutationally activated NRF2. In contrast, regulation of EGFR and TGFA occurs by an indirect mechanism, which is enabled by the ability of NRF2 to block the activity of the melanocytic lineage factor MITF in melanoma. MITF effectively suppresses EGFR and TGFA expression and therefore serves as link between NRF2 and EGFR. As EGFR was previously described to stimulate NRF2 activity, the mutual activation of NRF2 and EGFR pathways was investigated. The presence of NRF2 was necessary for full EGFR pathway activation, as NRF2-knockout cells showed reduced AKT activation in response to EGF stimulation compared to controls. Conversely, EGF led to the nuclear localization and activation of NRF2, thereby demonstrating that NRF2 and EGFR are connected in a positive feedback loop in melanoma. In summary, our data show that the EGFR-positive melanoma phenotype is strongly supported by NRF2, thus revealing a novel maintenance mechanism for this clinically challenging melanoma subpopulation.
Insights
The transcription factor NRF2 drives the expression and activation of Epidermal Growth Factor Receptor (EGFR) in melanoma. This NRF2-EGFR interaction forms a positive feedback loop, promoting aggressive melanoma phenotypes.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Receptor tyrosine kinases (RTKs) are seldom mutated in melanoma but are linked to invasion and treatment resistance.
- Epidermal Growth Factor Receptor (EGFR) expression in a subset of melanomas correlates with poor prognosis.
- Understanding EGFR regulation is crucial for deciphering melanoma progression.
Purpose of the Study:
- To investigate the role of transcription factor NRF2 in regulating EGFR expression and activation in melanoma.
- To elucidate the molecular mechanisms linking NRF2 and EGFR signaling pathways.
- To identify potential therapeutic targets for EGFR-positive melanoma.
Main Methods:
- Chromatin immunoprecipitation sequencing (ChIP-seq) to identify NRF2 binding sites.
- Analysis of gene expression (EGFR, EGF, TGFα, MITF) under varying conditions.
- NRF2-knockout cell models to assess EGFR pathway activation.
- Western blotting to evaluate AKT activation and nuclear localization of NRF2.
Main Results:
- NRF2 directly binds to the EGF promoter, inducing EGF expression.
- NRF2 indirectly upregulates EGFR and TGFα by inhibiting MITF activity.
- NRF2 is essential for full EGFR pathway activation, indicated by AKT signaling.
- EGFR signaling promotes nuclear localization and activation of NRF2, establishing a positive feedback loop.
Conclusions:
- NRF2 is a key mediator of EGFR expression and activation in melanoma.
- The NRF2-EGFR positive feedback loop sustains the aggressive phenotype of EGFR-positive melanoma.
- Targeting the NRF2-EGFR axis may offer a novel therapeutic strategy for this melanoma subtype.
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