A reversible metabolic stress-sensitive regulation of CRMP2A orchestrates EMT/stemness and increases metastatic potential in cancer

CRMP2A 的可逆代谢应激敏感调节可协调 EMT/干细胞特性并增加癌症的转移潜能

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作者:Aristeidis E Boukouris, Yongneng Zhang, Bruno Saleme, Adam Kinnaird, Yuan Yuan Zhao, Yongsheng Liu, Sotirios D Zervopoulos, Subhash K Das, Rohan D Mittal, Alois Haromy, Maria Areli Lorenzana-Carrillo, Amanda R Krysler, Christopher R Cromwell, Basil P Hubbard, Gopinath Sutendra, Evangelos D Michelaki

Abstract

An epithelial-to-mesenchymal transition (EMT) phenotype with cancer stem cell-like properties is a critical feature of aggressive/metastatic tumors, but the mechanism(s) that promote it and its relation to metabolic stress remain unknown. Here we show that Collapsin Response Mediator Protein 2A (CRMP2A) is unexpectedly and reversibly induced in cancer cells in response to multiple metabolic stresses, including low glucose and hypoxia, and inhibits EMT/stemness. Loss of CRMP2A, when metabolic stress decreases (e.g., around blood vessels in vivo) or by gene deletion, induces extensive microtubule remodeling, increased glutamine utilization toward pyrimidine synthesis, and an EMT/stemness phenotype with increased migration, chemoresistance, tumor initiation capacity/growth, and metastatic potential. In a cohort of 27 prostate cancer patients with biopsies from primary tumors and distant metastases, CRMP2A expression decreases in the metastatic versus primary tumors. CRMP2A is an endogenous molecular brake on cancer EMT/stemness and its loss increases the aggressiveness and metastatic potential of tumors.

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