Epithelial cell adhesion molecule (EpCAM) is associated with prostate cancer metastasis and chemo/radioresistance via the PI3K/Akt/mTOR signaling pathway

抗辐射性 PI3K/AKT/mTOR通路 癌症研究 上皮细胞粘附分子 蛋白激酶B DU145型 LNCaP公司 生物 细胞生长 化学 细胞粘附分子 癌细胞 信号转导 癌症 细胞培养 细胞生物学 遗传学
作者
Jie Ni,Paul Cozzi,Jingli Hao,Julia Beretov,Lei Chang,Wei Duan,Sarah Shigdar,Warick Delprado,Peter Graham,Joseph Bucci,John H. Kearsley,Yong Li
出处
期刊:The International Journal of Biochemistry & Cell Biology [Elsevier BV]
卷期号:45 (12): 2736-2748 被引量:200
标识
DOI:10.1016/j.biocel.2013.09.008
摘要

Prostate cancer (CaP) is the second leading malignancy in men. The role of epithelial cell adhesion molecule (EpCAM), also known as CD326, in CaP progression and therapeutic resistance is still uncertain. Here, we aimed to investigate the roles of EpCAM in CaP metastasis and chemo/radioresistance. Expression of EpCAM in CaP cell lines and human CaP tissues was assessed using immunofluorescence and immunohistochemistry, respectively. EpCAM was knocked down (KD) in PC-3, DU145 and LNCaP-C4-2B cells using small interfering RNA (siRNA), and KD results were confirmed by confocal microscope, Western blotting and quantitative real time polymerase chain reaction (qRT-PCR). Cell growth was evaluated by proliferation and colony formation assays. The invasive potential was assessed using a matrigel chamber assay. Tumorigenesis potential was measured by a sphere formation assay. Chemo-/radiosensitivity were measured using a colony formation assay. Over-expression of EpCAM was found in primary CaP tissues and lymph node metastases including cancer cells and surrounding stromal cells. KD of EpCAM suppressed CaP proliferation and invasive ability, reduced sphere formation, enhanced chemo-/radiosensitivity, and down-regulated E-cadherin, p-Akt, p-mTOR, p-4EBP1 and p-S6K expression in CaP cells. Our findings suggest that EpCAM plays an important role in CaP proliferation, invasion, metastasis and chemo-/radioresistance associated with the activation of the PI3K/Akt/mTOR signaling pathway and is a novel therapeutic target to sensitize CaP cells to chemo-/radiotherapy.
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