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Original Article | Open Access

BEX2 influences the MCL1-Hedgehog signaling axis to regulate the potential of stemness characterization in colorectal cancer

Yucheng Qian1,2,3,4,*Jingsun Wei1,2,3,4,*Yuan Bian5,*Yinuo Tan2,3,4,6Yimin Fang1,2,3,4Liubo Chen1,2,3,4Kai Jiang1,2,3,4Dongliang Fu1,2,3,4Xiaoxu Ge1,2,3,4Tianyi Ling1,2,3,4Qian Xiao1,2,3,4Kefeng Ding1,2,3,4 ( )Yeting Hu1,2,3,4 ( )
Department of Colorectal Surgery and Oncology (Key Laboratory of Cancer Prevention and Intervention, China National Ministry of Education, Key Laboratory of Molecular Biology in Medical Sciences, Zhejiang Province, China), The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310000, China
Center for Medical Research and Innovation in Digestive System Tumors, Ministry of Education, Hangzhou 310000, China
Zhejiang Provincial Clinical Research Center for CANCER, Hangzhou 310000, China
Cancer Center of Zhejiang University, Hangzhou 310000, China
Department of Colorectal Surgery, Shaoxing Central Hospital, Shaoxing 312030, China
Department of Medical Oncology, Key Laboratory of Cancer Prevention and Intervention, Ministry of Education, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310009, China

*These authors contributed equally to this work.

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Abstract

Objective

Colorectal cancer (CRC) progression is driven by cancer stem cells (CSCs) that evade treatment through dynamic phenotype modulation. Our previous research identified BEX2 as a significant regulator of CRC malignancy involving the Hedgehog (Hh) pathway. This study aimed to elucidate the influence of BEX2 on CRC stemness and the interaction with the Hh signaling pathway, potentially uncovering innovative therapeutic strategies for combating CRC.

Methods

TCGA and GEO data were analyzed to correlate BEX2 expression with clinical outcomes and stemness markers in CRC. Functional assays, including spheroid formation, flow cytometry, extreme limiting dilution assay (ELDA), Transwell, wound healing, and cell viability assay, were performed in DLD1 and HCT116 cell lines. Immunoblotting and qRT-PCR assessed BEX2 expression with in vivo validation in NOD/SCID mice.

Results

The findings revealed a negative correlation between BEX2 expression and the levels of stemness-associated genes with a significant association with CRC patient’ prognosis. Overexpression of BEX2 diminished CRC stemness potential, whereas BEX2 knockdown led to a pronounced enhancement of these stem-like characteristics. Further investigation revealed that BEX2 inhibited the Hh pathway. BEX2 interacted with MCL1, promoting ubiquitination and degradation, thereby decreasing MCL1 stability. Low BEX2 expression stabilized MCL1, which enhanced stemness potential. These results suggested BEX2 modulates CRC stemness via MCL1 downregulation.

Conclusions

Taken together, the current study findings highlight BEX2 and MCL1 as potential therapeutic targets in CRC with BEX2 emerging as a key regulator of stemness, chemoresistance, and invasiveness. These findings advance our understanding of CRC and pave the way for more effective therapies.

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Cancer Biology & Medicine
Pages 276-293

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Cite this article:
Qian Y, Wei J, Bian Y, et al. BEX2 influences the MCL1-Hedgehog signaling axis to regulate the potential of stemness characterization in colorectal cancer. Cancer Biology & Medicine, 2026, 23(2): 276-293. https://doi.org/10.20892/j.issn.2095-3941.2025.0120

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Received: 28 March 2025
Accepted: 05 January 2026
Published: 01 February 2026
©2026 The Authors.

Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0)