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Updated: Jan 1, 2026

Cell Population Analyses During Skin Carcinogenesis
Published on: August 21, 2013
Regulation and Role of GLI1 in Cutaneous Squamous Cell Carcinoma Pathogenesis
Joanna Pyczek1, Natalia Khizanishvili1, Maria Kuzyakova1
1Institute of Human Genetics, University Medical Center Goettingen, Goettingen, Germany.
Abstract:
Cutaneous squamous cell carcinoma (cSCC) is the second most common skin tumor in humans. Although current therapies are sufficient to clear the tumor in many cases, the overall risk of cSCC metastasis is still 5%. Alternative treatment options could help to overcome this situation. Here we focused on the role of the Hedgehog (HH) signaling pathway and its interplay with epidermal growth factor receptor (EGFR) signaling in cSCC. The analyses revealed that, despite lack of Sonic HH (SHH) expression, a subset of human cSCC can express GLI1, a marker for active HH signaling, within distinct tumor areas. In contrast, all tumors strongly express EGFR and the hair follicle stem cell marker SOX9 at the highly proliferative tumor-stroma interface, whereas central tumor regions with a more differentiated stratum spinosum cell type lack both EGFR and SOX9 expression. In vitro experiments indicate that activation of EGFR signaling in the human cSCC cell lines SCL-1, MET-1, and MET-4 leads to GLI1 inhibition via the MEK/ERK axis without affecting cellular proliferation. Of note, EGFR activation also inhibits cellular migration of SCL-1 and MET-4 cells. Because proliferation and migration of the cells is also not altered by a GLI1 knockdown, GLI1 is apparently not involved in processes of aggressiveness in established cSCC tumors. In contrast, our data rather suggest a negative correlation between Gli1 expression level and cSCC formation because skin of Ptch mice with slightly elevated Gli1 expression levels is significantly less susceptible to chemically-induced cSCC formation compared to murine wildtype skin. Although not yet formally validated, these data open the possibility that GLI1 (and thus HH signaling) may antagonize cSCC initiation and is not involved in cSCC aggressiveness, at least in a subset of cSCC.
Insights
The Hedgehog (HH) signaling pathway, marked by GLI1, may antagonize skin cancer (cSCC) formation. In established tumors, GLI1 does not appear to drive cSCC aggressiveness.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Cutaneous squamous cell carcinoma (cSCC) is a common human skin tumor with a notable metastasis risk.
- Current therapies are not always sufficient, necessitating exploration of alternative treatment strategies.
- The interplay between Hedgehog (HH) and Epidermal Growth Factor Receptor (EGFR) signaling in cSCC is not fully understood.
Purpose of the Study:
- To investigate the role of the Hedgehog (HH) signaling pathway and its interaction with EGFR signaling in cSCC.
- To determine the involvement of GLI1, a marker of HH pathway activity, in cSCC development and progression.
- To explore the potential of targeting these pathways for cSCC treatment.
Main Methods:
- Analysis of GLI1, EGFR, and SOX9 expression in human cSCC tumors.
- In vitro experiments using human cSCC cell lines (SCL-1, MET-1, MET-4).
- Investigation of EGFR signaling effects on GLI1 expression and cellular behavior via the MEK/ERK axis.
- GLI1 knockdown experiments and analysis of chemically-induced cSCC in Ptch mice.
Main Results:
- A subset of human cSCC expressed GLI1, indicating active HH signaling, while EGFR and SOX9 were localized at the tumor-stroma interface.
- EGFR activation inhibited GLI1 expression via the MEK/ERK pathway and reduced cellular migration in vitro.
- GLI1 knockdown did not affect proliferation or migration in established cSCC cells.
- Elevated GLI1 levels in Ptch mice correlated with reduced susceptibility to chemically-induced cSCC formation.
Conclusions:
- GLI1 and HH signaling may antagonize cSCC initiation rather than promote aggressiveness.
- EGFR signaling can inhibit GLI1 expression in cSCC cells.
- These findings suggest a complex role for HH signaling in cSCC, potentially offering new therapeutic avenues.
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