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◆ Molecular Cancer2026-08-18· Cancer research

IGF2BP3 promotes M2 macrophage polarization and ESCC progression by increasing USP36-mediated β-catenin stabilization

Zhongxian Tian, Yongjia Zhou, Yunpeng Zhao, Peiwei Li, Yi Ding, Guoshuo Tang, Yunfei Zhao, Qingkun Cui, Peichao Li, Lotte B. Pedersen, Ning Jiang, Honglei Wu, Xiaogang Zhao

原始摘要(英文原文)· Original abstract
Esophageal squamous cell carcinoma is a highly aggressive malignancy with poor prognosis that is characterized by an immunosuppressive tumor microenvironment that critically contributes to tumor progression and therapeutic resistance. RNA-binding proteins are emerging regulators of cancer biology; however, their role in shaping the tumor immune microenvironment of esophageal squamous cell carcinoma remains largely unexplored. This study aimed to investigate the function and mechanism of the RNA-binding protein IGF2BP3 in esophageal squamous cell carcinoma progression and immune modulation. Single-cell RNA sequencing datasets including esophageal squamous cell carcinoma and adjacent normal tissues were integrated to identify dysregulated RNA-binding proteins. The functional role of IGF2BP3 was evaluated using in vitro assays, organoid models, and immunocompetent and immunodeficient mouse models. RNA immunoprecipitation, polysome profiling, ubiquitination assays, and luciferase reporter assays were employed to elucidate the underlying molecular mechanisms. Immune cell infiltration was analyzed by flow cytometry, immunohistochemistry, and multiplex immunofluorescence. Virtual screening, biolayer interferometry, and molecular docking were used to identify small-molecule inhibitors of IGF2BP3. Statistical analyses included Student’s t tests, one-way analysis of variance, Kaplan‒Meier survival analysis, and correlation analyses. IGF2BP3 was specifically overexpressed in epithelial tumor cells, exhibited progressively increasing expression during esophageal squamous cell carcinoma progression, and correlated with poor clinical outcomes. IGF2BP3 promoted tumor growth by activating Wnt signaling through the stabilization of β-catenin. Mechanistically, IGF2BP3 increased the translation of the deubiquitinase USP36 without altering the stability of its messenger RNA, leading to the USP36-mediated deubiquitination and stabilization of β-catenin. Activation of β-catenin signaling increased the transcription and secretion of transforming growth factor beta, which promoted the polarization of macrophages toward the immunosuppressive M2 phenotype. Pharmacological inhibition of IGF2BP3 with digoxin disrupted the IGF2BP3–USP36–β-catenin axis, reduced transforming growth factor beta production, suppressed tumor growth, and increased the efficacy of paclitaxel and PD-1 blockade in preclinical models. This study identifies IGF2BP3 as a critical posttranscriptional regulator that links oncogenic signaling to immune suppression in esophageal squamous cell carcinoma. Targeting IGF2BP3 represents a promising therapeutic strategy to remodel the tumor microenvironment and improve responses to chemotherapy and immunotherapy.
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IGF2BP3 promotes M2 macrophage polarization and ESCC progression by increasing USP36-mediated β-catenin stabilization — 科研速览 Science Skim