Department of Urology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, China.
The Core Laboratory in Medical Center of Clinical Research, Department of Molecular Diagnostics & Endocrinology, Shanghai Ninth People's Hospital, State Key Laboratory of Medical Genomics, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, China.
J Cancer Res Clin Oncol. 2023 Aug;149(10):7663-7677. doi: 10.1007/s00432-023-04705-2. Epub 2023 Mar 31.
As a nuclear transport protein, XPO7 has been observed to show abnormal expression in various types of human cancers. However, the role of XPO7 in PCa remains elusive.
Here, in this study, immunohistochemistry and bioinformatics were used to determine the expression pattern and prognostic significance of XPO7. To investigate the functions of XPO7 in vitro and in vivo, we knocked down XPO7 in PCa cell lines and established xenograft mice models. Then, we used multiple experiments to determine the cell proliferation, migration, invasion, cell cycle and EMT in PCa cells after XPO7 modulation. Mechanistically, we conducted RNA-seq and identified the regulating effect of XPO7 on cell cycle-related and PI3K-AKT pathways. Furthermore, we assessed the regulating correlation between XPO7 and TCF3 and verified by a series of rescue experiments.
We found a higher XPO7 expression in prostate cancer tissues and predicted a poorer prognosis of prostate cancer. Then, we further revealed that the ectopic expression of XPO7 in PCa cells facilitated cells proliferation, migration, cell cycle progression and EMT in vitro and promoted tumor growth in vivo. Mechanistically, we conducted RNA-seq and identified the regulating effect of XPO7 on cell cycle-related and PI3K-AKT pathways. Furthermore, a significantly positive correlation was discovered between the expression of XPO7 and TCF3. In addition, XPO7 may regulate PCa through mediating TCF3 expression. TCF3 depletion could alleviate the influence of XPO7 overexpression on malignant phenotypes of PCa cells.
These findings indicate that XPO7 promotes PCa initiation and progression and that targeting XPO7 might be therapeutically beneficial to patients with PCa.
作为一种核转运蛋白,XPO7 在多种人类癌症中表现出异常表达。然而,XPO7 在前列腺癌(PCa)中的作用仍不清楚。
在本研究中,我们使用免疫组织化学和生物信息学来确定 XPO7 的表达模式和预后意义。为了研究 XPO7 在体外和体内的功能,我们敲低了 PCa 细胞系中的 XPO7 并建立了异种移植小鼠模型。然后,我们使用多种实验确定 XPO7 调节后 PCa 细胞的增殖、迁移、侵袭、细胞周期和 EMT。从机制上讲,我们进行了 RNA-seq 并确定了 XPO7 对细胞周期相关和 PI3K-AKT 通路的调节作用。此外,我们评估了 XPO7 与 TCF3 之间的调节相关性,并通过一系列挽救实验进行了验证。
我们发现前列腺癌组织中 XPO7 的表达较高,并预测前列腺癌的预后较差。然后,我们进一步揭示了 XPO7 在 PCa 细胞中的异位表达促进了细胞在体外的增殖、迁移、细胞周期进程和 EMT,并促进了体内肿瘤的生长。从机制上讲,我们进行了 RNA-seq 并确定了 XPO7 对细胞周期相关和 PI3K-AKT 通路的调节作用。此外,发现 XPO7 的表达与 TCF3 之间存在显著的正相关。此外,XPO7 可能通过调节 TCF3 表达来调节 PCa。TCF3 耗竭可以减轻 XPO7 过表达对 PCa 细胞恶性表型的影响。
这些发现表明 XPO7 促进了 PCa 的发生和进展,针对 XPO7 可能对 PCa 患者具有治疗益处。