TMEM158 promotes the proliferation and migration of glioma cells via STAT3 signaling in glioblastomas

Author:

Li JiaboORCID,Wang Xuya,Chen Lulu,Zhang Jinhao,Zhang Yiming,Ren Xiao,Sun Jinzhang,Fan Xiaoguang,Fan Jikang,Li Tao,Tong LuqingORCID,Yi LiORCID,Chen Lei,Liu Jie,Shang Guanjie,Ren Xiude,Zhang Hao,Yu Shengping,Ming Haolang,Huang QiangORCID,Dong JunORCID,Zhang ChenORCID,Yang XuejunORCID

Abstract

AbstractGlioblastoma is the most common primary intracranial malignant tumor in adults and has high morbidity and high mortality. TMEM158 has been reported to promote the progression of solid tumors. However, its potential role in glioma is still unclear. Here, we found that TMEM158 expression in human glioma cells in the tumor core was significantly higher than that in noncancerous cells at the tumor edge using bioinformatics analysis. Cancer cells in patients with primary GBMs harbored significantly higher expression of TMEM158 than those in patients with WHO grade II or III gliomas. Interestingly, regardless of tumor grading, human glioma samples that were IDH1-wild-type (IDH1-WT) exhibited higher expression of TMEM158 than those with IDH1-mutant (IDH1-Mut). We also illustrated that TMEM158 mRNA expression was correlated with poor overall survival in glioma patients. Furthermore, we demonstrated that silencing TMEM158 inhibited the proliferation of glioma cells and that TMEM158 overexpression promoted the migration and invasion of glioma cells by stimulating the EMT process. We found that the underlying mechanism involves STAT3 activation mediating TMEM158-driven glioma progression. In vivo results further confirmed the inhibitory effect of the TMEM158 downregulation on glioma growth. Collectively, these findings further our understanding of the oncogenic function of TMEM158 in gliomas, which represents a potential therapeutic target, especially for GBMs.

Funder

National Natural Science Foundation of China

Beijing-Tianjin-Hebei Basic Research Cooperation Project

Publisher

Springer Science and Business Media LLC

Subject

Cancer Research,Molecular Biology,Molecular Medicine

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