CircRNA-SORE mediates sorafenib resistance in hepatocellular carcinoma by stabilizing YBX1

Junjie Xu(Sir Run Run Shaw Hospital), Lin Ji(Sir Run Run Shaw Hospital), Yuelong Liang(Sir Run Run Shaw Hospital), Zhe Wan(Sir Run Run Shaw Hospital), Wei Zheng(National Institutes of Health), Xiaomin Song(Chinese Academy of Sciences), Kirill Gorshkov(National Institutes of Health), Qiming Sun(Second Affiliated Hospital of Zhejiang University), Hui Lin(Sir Run Run Shaw Hospital), Xueyong Zheng(Sir Run Run Shaw Hospital), Jiang Chen(Sir Run Run Shaw Hospital), Renan Jin(Sir Run Run Shaw Hospital), Xiao Liang(Sir Run Run Shaw Hospital), Xiujun Cai(Sir Run Run Shaw Hospital)
Signal Transduction and Targeted Therapy
December 26, 2020
Cited by 563Open Access
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Abstract

Sorafenib is the first-line chemotherapeutic therapy for advanced hepatocellular carcinoma (HCC). However, sorafenib resistance significantly limits its therapeutic efficacy, and the mechanisms underlying resistance have not been fully clarified. Here we report that a circular RNA, circRNA-SORE (a circular RNA upregulated in sorafenib-resistant HCC cells), plays a significant role in sorafenib resistance in HCC. We found that circRNA-SORE is upregulated in sorafenib-resistant HCC cells and depletion of circRNA-SORE substantially increases the cell-killing ability of sorafenib. Further studies revealed that circRNA-SORE binds the master oncogenic protein YBX1 in the cytoplasm, which prevents YBX1 nuclear interaction with the E3 ubiquitin ligase PRP19 and thus blocks PRP19-mediated YBX1 degradation. Moreover, our in vitro and in vivo results suggest that circRNA-SORE is transported by exosomes to spread sorafenib resistance among HCC cells. Using different HCC mouse models, we demonstrated that silencing circRNA-SORE by injection of siRNA could substantially overcome sorafenib resistance. Our study provides a proof-of-concept demonstration for a potential strategy to overcome sorafenib resistance in HCC patients by targeting circRNA-SORE or YBX1.


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