Author
Listed:
- Lishan Fang
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Junchao Cai
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Baixue Chen
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Shanshan Wu
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Rong Li
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Xiaonan Xu
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Yi Yang
(Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education
Zhongshan School of Medicine, Sun Yat-sen University)
- Hongyu Guan
(The First Affiliated Hospital of Sun Yat-sen University)
- Xun Zhu
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Le Zhang
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Jie Yuan
(Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education
Key Laboratory of Functional Molecules from Oceanic Microorganisms, Sun Yat-sen University)
- Jueheng Wu
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
- Mengfeng Li
(Sun Yat-sen University
Key Laboratory of Tropical Disease Control, Sun Yat-sen University, Ministry of Education)
Abstract
Cancer stem cells (CSCs) are involved in tumorigenesis, tumour recurrence and therapy resistance and Wnt signalling is essential for the development of the biological traits of CSCs. In non-small cell lung carcinoma (NSCLC), unlike in colon cancer, mutations in β-catenin and APC genes are uncommon; thus, the mechanism underlying the constitutive activation of Wnt signalling in NSCLC remains unclear. Here we report that miR-582-3p expression correlates with the overall- and recurrence-free-survival of NSCLC patients, and miR-582-3p has an activating effect on Wnt/β-catenin signalling. miR-582-3p overexpression simultaneously targets multiple negative regulators of the Wnt/β-catenin pathway, namely, AXIN2, DKK3 and SFRP1. Consequently, miR-582-3p promotes CSC traits of NSCLC cells in vitro and tumorigenesis and tumour recurrence in vivo. Antagonizing miR-582-3p potently inhibits tumour initiation and progression in xenografted animal models. These findings suggest that miR-582-3p mediates the constitutive activation of Wnt/β-catenin signalling, likely serving as a potential therapeutic target for NSCLC.
Suggested Citation
Lishan Fang & Junchao Cai & Baixue Chen & Shanshan Wu & Rong Li & Xiaonan Xu & Yi Yang & Hongyu Guan & Xun Zhu & Le Zhang & Jie Yuan & Jueheng Wu & Mengfeng Li, 2015.
"Aberrantly expressed miR-582-3p maintains lung cancer stem cell-like traits by activating Wnt/β-catenin signalling,"
Nature Communications, Nature, vol. 6(1), pages 1-15, December.
Handle:
RePEc:nat:natcom:v:6:y:2015:i:1:d:10.1038_ncomms9640
DOI: 10.1038/ncomms9640
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