microRNA-320b suppresses HNF4G and IGF2BP2 expression to inhibit angiogenesis and tumor growth of lung cancer

Author:

Ma Yu-Shui12,Shi Bo-Wen3,Guo Jun-Hong4,Liu Ji-Bin2,Yang Xiao-Li1,Xin Rui1,Shi Yi1,Zhang Dan-Dan1,Lu Gai-Xia5,Jia Cheng-You5,Wang Hui-Min1,Wang Pei-Yao1,Yang Hui-Qiong1,Zhang Jia-Jia5,Wu Wei4,Cao Ping-Sheng1,Yin Yu-Zhen5,Gu Li-Peng1,Tian Lin-Lin1,Lv Zhong-Wei5,Wu Chun-Yan4,Wang Gao-Ren2,Yu Fei5,Hou Li-Kun4,Jiang Geng-Xi3,Fu Da1ORCID

Affiliation:

1. Central Laboratory for Medical Research, Shanghai Tenth People’s Hospital, Tongji University School of Medicine, Shanghai, P.R. China

2. Cancer Institute, Affiliated Tumor Hospital of Nantong University, Nantong, P.R. China

3. Department of Thoracic Surgery, Navy Military Medical University Affiliated Changhai Hospital, Shanghai, P.R. China

4. Department of Pathology, Shanghai Pulmonary Hospital, Tongji University School of Medicine, Shanghai, P.R. China

5. Department of Nuclear Medicine, Shanghai Tenth People’s Hospital, Tongji University School of Medicine, Shanghai, P.R. China

Abstract

Abstract We examined the effect of microRNA-320b (miR-320b) on tumor growth and angiogenesis in lung cancer and also determined its downstream molecular mechanisms. Lung cancer tissues and adjacent non-cancerous tissues were collected from 66 patients with lung cancer. miR-320b expression was experimentally determined to be expressed at low level in cancer tissues. The results of gain-of-function experiments suggested that miR-320b overexpression suppressed cancer cell invasion, tube formation, tumor volume and angiogenesis in xenografted nude mice. Hepatocyte nuclear factor 4 gamma (HNF4G) was identified as a target of miR-320b based on in silico analysis. Dual-luciferase reporter gene assays further identified the binding relationship between HNF4G and miR-320b. Lung cancer tissues exhibited increased expression of HNF4G and insulin-like growth factor 2 mRNA-binding protein 2 (IGF2BP2). Meanwhile, HNF4G knockdown suppressed IGF2BP2 expression, thereby repressing cancer cell invasion and tube formation. Furthermore, IGF2BP2 modified m6A to increase the expression of thymidine kinase 1 (TK1), thus promoting angiogenesis. In nude mice, restoration of TK1 reversed the suppressive effect of miR-320b overexpression on tumor growth rate and CD31 expression. In conclusion, miR-320b suppresses lung cancer growth and angiogenesis by inhibiting HNF4G, IGF2BP2 and TK1.

Funder

National Natural Science Foundation of China

Shanghai Natural Science Foundation

Shanghai Municipal Commission of Health and Family Planning

Construction of Clinical Medical Centre for Tumor Biological Samples in Nantong

Jiangsu 333 Program

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,General Medicine

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