Metabolic stress‐induced reciprocal loop of long noncoding RNA ZFAS1 and ZEB1 promotes epithelial–mesenchymal transition and metastasis of pancreatic cancer cells

Author:

Zhuo Wenfeng1,Zeng Zhu1,Hu Yuhang1,Hu Ping1,Han Shengbo1,Wang Decai1,Wang Fan1,Zhao Yong1,Huang Yan1,Wang Jie1,Lv Guozheng1,Wang Hongda1,Li Yang1,Zhao Eryang1,Cai Kailin2,Zhao Gang1ORCID

Affiliation:

1. Department of Emergency Surgery, Union Hospital, Tongji Medical College Huazhong University of Science and Technology Wuhan China

2. Department of Gastrointestinal Surgery, Union Hospital, Tongji Medical College Huazhong University of Science and Technology Wuhan China

Abstract

AbstractPancreatic cancer (PC) development faces significant metabolic stress due to metabolic reprogramming and a distinct hypovascular nature, often leading to glucose and glutamine depletion. However, the adaption mechanisms by which PC adapts to these metabolic challenges have not yet been completely explored. Here, we found that metabolic stress induced by glucose and glutamine deprivation led to an overexpression of ZNFX1 antisense RNA 1 (ZFAS1). This overexpression played a significant role in instigating PC cell epithelial–mesenchymal transition (EMT) and metastasis. Mechanistically, ZFAS1 enhanced the interaction between AMPK, a key kinase, and ZEB1, the primary regulator of EMT. This interaction resulted in the phosphorylation and subsequent stabilization of ZEB1. Interestingly, ZEB1 also reciprocally influenced the transcription of ZFAS1 by binding to its promoter. Furthermore, when ZFAS1 was depleted, the nutrient deprivation‐induced EMT of PC cells and lung metastasis in nude mice were significantly inhibited. Our investigations also revealed that ZFAS1‐rich exosomes released from cells suffering glucose and glutamine deprivation promoted the EMT and metastasis of recipient PC cells. Corroborating these findings, a correlated upregulation of ZFAS1 and ZEB1 expression was observed in PC tissues and was associated with a poor overall survival rate for patients. Our findings highlight the involvement of a long noncoding RNA‐driven metabolic adaptation in promoting EMT and metastasis of PC, suggesting ZFAS1 as a promising novel therapeutic target for PC metabolic treatment.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cancer Research,Oncology,General Medicine

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