Mucin 1 promotes tumor progression through activating WNT/β-catenin signaling pathway in intrahepatic cholangiocarcinoma

Fei Song(Fudan University), Feiyu Chen(Zhongshan Hospital), Suiyi Wu(Fudan University), Bo Hu(Zhongshan Hospital), Xiaoliang Liang(Nantong University), Hao-Qin Yang(Nanjing Foreign Language School), Jianwen Cheng(Fudan University), Pengxiang Wang(Fudan University), Wei Guo(Zhongshan Hospital), Jian Zhou(Fudan University), Jia Fan(Zhongshan Hospital), Zhong Chen(Nantong University), Xin‐Rong Yang(Fudan University)
Journal of Cancer
January 1, 2021
Cited by 20Open Access
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Abstract

Background: Current treatment options for intrahepatic cholangiocarcinoma (ICC) are limited by the lack of understanding of the disease pathogenesis. It has been known that mucin 1 (MUC1) is a cell surface mucin that highly expressed in various cancer tissues. However, its role in ICC has not been well studied. The purpose of this study was to investigate the clinical significance and biological function of MUC1 in ICC. Methods: qRT-PCR and western blot assays were performed to examine MUC1 expression. RNA-Seq (RNA Sequencing) s conducted to explore the RNA expression. A tissue microarray study including 214 ICC cases was also conducted to evaluate the clinical relevance and prognostic significance of MUC1. The role and underlying mechanisms of MUC1 in regulating cell growth and invasion were further explored both in vitro and in vivo models. Results: The mRNA and protein levels of MUC1 were significantly up-regulated in ICC compared to paired non-tumor tissues. Depletion of MUC1 in HCCC9810 cells significantly inhibited cell proliferation, migration and invasion in vitro and overexpression of MUC1 in RBE cells resulted in increased cell proliferation, migration and invasion. Both univariate and multivariate analysis revealed that the protein expression of MUC1 was associated with overall survival and relapse-free survival after tumor resection. Clinically, high MUC1 expression was more commonly observed in aggressive tumors. Further studies indicated that MUC1 exerted its function through activating Wnt/ -catenin pathway.


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