化学
下调和上调
基因敲除
细胞生物学
细胞迁移
癌症研究
细胞
钙粘蛋白
细胞粘附
肿瘤进展
桥粒
细胞生长
焦点粘着
机制(生物学)
信号转导
细胞内
活体细胞成像
成像生物标志物
细胞粘附分子
粘附
癌症
转移
荧光寿命成像显微镜
粘合连接
肿瘤微环境
作者
Longxiang Li,Meng Li,Baofeng Li,Jincheng Wang,Haijiao Xu,Ye Wang,Yan Shi,Yong Liu,Jilin Tang,Jing Gao,Jingxi Li
标识
DOI:10.1021/acs.analchem.5c04303
摘要
TROP2 has emerged as a significant biomarker and therapeutic target in various epithelial cancers, owing to its tissue-specific expression and its association with tumor proliferation, invasion, and metastasis. Tumor cell migration is a critical determinant of tumor invasiveness and malignancy, serving as a pivotal factor in prognosis assessment and therapeutic response evaluation. Despite these insights, the molecular mechanisms underpinning TROP2's role in tumor progression─particularly in mediating tumor cell migration─remain incompletely understood. Desmosomes, as essential cell-cell adhesion structures, are integral to maintaining tissue architecture; however, how subtle alterations in their expression and structural organization influence tumor cell adhesion warrants further investigation. In this study, we employed direct stochastic optical reconstruction microscopy (dSTORM) coupled with biochemical approaches to elucidate the mechanism by which TROP2 regulates tumor cell migration via desmosomal cadherin DSG2. Co-localization imaging and coimmunoprecipitation assays confirmed an interaction between TROP2 and DSG2. By establishing TROP2 overexpression and knockdown cell lines, we observed that high TROP2 expression not only downregulated DSG2 levels but also impaired desmosome assembly. These findings were further confirmed at the tissue level. Moreover, we found that TROP2 facilitated tumor cell proliferation and migration by suppressing DSG2 expression and activating EGFR/AKT and FAK downstream signaling pathways. Our findings reveal the molecular mechanism by which TROP2 promotes migration, highlighting the critical role of intercellular junction integrity in cancer progression. These insights provide a foundation for developing targeted therapies against TROP2 and its associated signaling mechanisms in epithelial malignancies.
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