Noncanonical regulation of HOIL-1 on cancer stemness and sorafenib resistance identifies pixantrone as a novel therapeutic agent for HCC

Peng Chen(Nanfang Hospital), Zheyu Dong(Nanfang Hospital), Wei Zhu(Nanfang Hospital), Junling Chen(Nanfang Hospital), Yuxin Zhou(Nanfang Hospital), Qiuyue Ye(Nanfang Hospital), Xinxin Liao(Nanfang Hospital), Yongfa Tan(Nanfang Hospital), Chuanjiang Li(Nanfang Hospital), Yuhao Wang(Nanfang Hospital), Huajin Pang(Nanfang Hospital), Chunhua Wen(Nanfang Hospital), Yuchuan Jiang(First Affiliated Hospital of Jinan University), Xiaoqing Li(Nanfang Hospital), Bo Li(Guiyang Medical University), Aihetaimu Aimaier(Nanfang Hospital), Lin Li(Nanfang Hospital), Jian Sun(Nanfang Hospital), Jiajie Hou(University of Macau), Libo Tang(Nanfang Hospital), Jinlin Hou(University of Macau), Yongyin Li(Nanfang Hospital)
Hepatology
October 11, 2023
Cited by 14

Abstract

BACKGROUND AND AIMS: Cancer stem cells (CSCs) contribute to therapy resistance in HCC. Linear ubiquitin chain assembly complex (LUBAC) has been reported to accelerate the progression of cancers, yet its role in the sorafenib response of HCC is poorly defined. Herein, we investigated the impact of LUBAC on sorafenib resistance and the CSC properties of HCC, and explored the potential targeted drugs. APPROACH AND RESULTS: We found that HOIL-1, but not the other components of LUBAC, played a contributing role in LUBAC-mediated HCC sorafenib resistance, independent of its ubiquitin ligase activity. Both in vitro and in vivo assays revealed that the upregulated HOIL-1 expression enhanced the CSC properties of HCC. Mechanistically, HOIL-1 promoted sorafenib resistance and the CSC properties of HCC through Notch1 signaling. Mass spectrometry, co-immunoprecipitation, western blot, and immunofluorescence were used to determine that the A64/Q65 residues of HOIL-1 bound with the K78 residue of Numb, resulting in impaired Numb-mediated Notch1 lysosomal degradation. Notably, pixantrone was screened out by Autodock Vina, which was validated to disrupt HOIL-1/Numb interaction to inhibit Notch1 signaling and CSC properties by targeting the Q65 residue of HOIL-1. Moreover, pixantrone exerted synergistic effects with sorafenib for the treatment of HCC in different HCC mouse models. CONCLUSIONS: HOIL-1 is critical in promoting sorafenib resistance and CSC properties of HCC through Notch1 signaling. Pixantrone targeting HOIL-1 restrains the sorafenib resistance and provides a potential therapeutic intervention for HCC.


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