EMX2 inhibits clear cell renal cell carcinoma progress via modulating Akt/FOXO3a pathway

Author:

Zhou Xiaofeng1234,Dong Sicheng1234,Zhou Yuhao1234,He Zhiqing1234,Zhang Zhixiong1234,Liao Liqiong1234,Zou Bangyu5,Zheng Xiaopeng1234,Peng Kaoqing1234,Duan Xiaolu1234ORCID

Affiliation:

1. Department of Urology The First Affiliated Hospital of Guangzhou Medical University Guangzhou China

2. Guangdong Key Laboratory of Urology Guangzhou China

3. Guangdong Engineering Research Center of Urinary Minimally Invasive Surgery Robot and Intelligent Equipment Guangzhou China

4. Guangzhou Institute of Urology Guangzhou China

5. Department of Urology, Changhai Hospital Naval Medical University Shanghai China

Abstract

AbstractEmpty spiracles homeobox 2 (EMX2) is initially identified as a key transcription factor that plays an essential role in the regulation of neuronal development and some brain disorders. Recently, several studies emphasized that EMX2 could as a tumor suppressor, but its role in human clear cell renal cell carcinoma (ccRCC) remains unclear. In the present study, we investigated the role and underlying mechanism of EMX2 in the regulation of ccRCC progress. Our results demonstrated that EMX2 expression was markedly decreased in ccRCC tissues and cell lines, and low EMX2 expression predicted the poor prognosis of ccRCC patients. In addition, forced expression of EMX2 significantly inhibited the cell growth, migration, and invasion in vitro, as well as ccRCC tumor growth in nude mice, via, at least in part, regulating Akt/FOXO3a pathway. In detail, EMX2 could attenuate the phosphorylation levels of Akt and FOXO3a, and increase FOXO3a expression without affecting total Akt expression in vivo and in vitro. Meanwhile, shRNA‐mediated knockdown of FOXO3a expression could obviously attenuate the effects of EMX2 on cell growth, migration, invasion, and tumor growth. Furthermore, EMX2 could significantly attenuate the interaction between Akt and FOXO3a. Taken together, our results demonstrated that EMX2 could inhibit ccRCC progress through, at least in part, modulating Akt/FOXO3a signaling pathway, thus representing a novel role and underlying mechanism of EMX2 in the regulation of ccRCC progress.

Publisher

Wiley

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