AMPK Promotes SPOP-Mediated NANOG Degradation to Regulate Prostate Cancer Cell Stemness

AMPK 促进 SPOP 介导的 NANOG 降解以调节前列腺癌细胞干性

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作者:Xinbo Wang, Jiali Jin, Fangning Wan, Linlin Zhao, Hongshang Chu, Cong Chen, Guanghong Liao, Jian Liu, Yue Yu, Hongqi Teng, Lan Fang, Cong Jiang, Weijuan Pan, Xin Xie, Jia Li, Xiaolin Lu, Xuejun Jiang, Xin Ge, Dingwei Ye, Ping Wang

Abstract

NANOG is an essential transcriptional factor for the maintenance of embryonic stem cells (ESCs) and cancer stem cells (CSCs) in prostate cancer (PCa). However, the regulation mechanism of NANOG protein stability in cancer progression is still elusive. Here, we report that NANOG is degraded by SPOP, a frequently mutated tumor suppressor of PCa. Cancer-associated mutations of SPOP or the mutation of NANOG at S68Y abrogates the SPOP-mediated NANOG degradation, leading to elevated PCa cancer stemness and poor prognosis. In addition, SPOP-mediated NANOG degradation is controlled by the AMPK-BRAF signal axis through the phosphorylation of NANOG at Ser68, which blocked the interaction between SPOP and NANOG. Thus, our study provides a regulation mechanism of PCa stemness controlled by phosphorylation-mediated NANOG stability, which helps to identify novel drug targets and improve therapeutic strategy for PCa.

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