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Updated: Jul 26, 2025

Modeling Oral-Esophageal Squamous Cell Carcinoma in 3D Organoids
Published on: December 23, 2022
GSK3β-driven SOX2 overexpression is a targetable vulnerability in esophageal squamous cell carcinoma
Li Kang1,2, Yujie Liu3, Jianzhong He4
1Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Shanghai, China.
Abstract:
Esophageal squamous cell carcinoma (ESCC) is one of the deadliest forms of human malignancy that currently lacks approved targeted therapeutics. Accumulating evidence suggests that SOX2 overexpression is a key driving factor for ESCC and various squamous cell carcinoma. Here, through screening a small-molecule kinase inhibitor library, we identified GSK3β as a kinase that is critically required for robust SOX2 expression in ESCC cells. GSK3β did not promote SOX2 transcriptionally but was required for SOX2 protein stability. We demonstrated that GSK3β interacts with and phosphorylates SOX2 at residue S251, which blocks SOX2 from ubiquitination and proteasome-dependent degradation instigated by ubiquitin E3 ligase CUL4ADET1-COP1. Pharmacological inhibition or knockdown of GSK3β by RNA interference selectively impaired SOX2-positive ESCC cell proliferation, cancer stemness, and tumor growth in mouse xenograft model, suggesting that GSK3β promotes ESCC tumorigenesis primarily by driving SOX2 overexpression. GSK3β was found to be frequently overexpressed in clinical esophageal tumors, and there was a positive correlation between GSK3β and SOX2 protein levels. Notably, we found that SOX2 enhanced GSK3β expression transcriptionally, suggesting the existence of a vicious cycle that drives a coordinated GSK3β and SOX2 overexpression in ESCC cells. Finally, we demonstrated in tumor xenograft model that GSK3β inhibitor AR-A014418 was effective in suppressing SOX2-positive ESCC tumor progression and inhibited tumor progression cooperatively with chemotherapeutic agent carboplatin. In conclusion, we uncovered a novel role for GSK3β in driving SOX2 overexpression and tumorigenesis and provided evidence that targeting GSK3β may hold promise for the treatment of recalcitrant ESCCs.
Insights
Targeting GSK3β kinase inhibits esophageal squamous cell carcinoma (ESCC) by stabilizing SOX2 protein. This discovery offers a new therapeutic strategy for ESCC, a deadly cancer lacking effective treatments.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Esophageal squamous cell carcinoma (ESCC) is a highly lethal cancer with limited targeted therapies.
- SOX2 overexpression is a critical driver in ESCC and other squamous cell carcinomas.
Purpose of the Study:
- To identify therapeutic targets for ESCC by investigating the role of SOX2 regulation.
- To explore the potential of targeting GSK3β as a treatment strategy for ESCC.
Main Methods:
- Screening of a small-molecule kinase inhibitor library to identify kinases regulating SOX2.
- Investigating the interaction and phosphorylation of SOX2 by GSK3β using biochemical assays.
- Assessing the effect of GSK3β inhibition on ESCC cell proliferation, stemness, and tumor growth in vivo.
- Analyzing GSK3β and SOX2 expression in clinical tumor samples.
Main Results:
- GSK3β was identified as essential for SOX2 protein stability, not transcription, in ESCC cells.
- GSK3β phosphorylates SOX2 at S251, preventing its degradation by CUL4A.
- GSK3β inhibition or knockdown reduced ESCC cell proliferation, stemness, and tumor growth.
- Co-overexpression of GSK3β and SOX2 was observed in clinical ESCC tumors, forming a positive feedback loop.
- GSK3β inhibitor AR-A014418 suppressed ESCC tumor progression, potentiating carboplatin efficacy.
Conclusions:
- GSK3β plays a crucial role in ESCC tumorigenesis by maintaining SOX2 overexpression.
- Targeting GSK3β represents a promising therapeutic approach for ESCC treatment.
- The identified GSK3β-SOX2 axis offers a novel therapeutic vulnerability in ESCC.

