UBXN1 promotes liver tumorigenesis by regulating mitochondrial homeostasis

Author:

Jiao Kun,Xu Guiqin,Liu Yun,Yang Zhaojuan,Xiang Lvzhu,Chen Zehong,Xu Chen,Zuo You,Wu Zhibai,Zheng Ningqian,Xu Wangjie,Zhang Li,Liu YongzhongORCID

Abstract

Abstract Background The maintenance of mitochondrial homeostasis is critical for tumor initiation and malignant progression because it increases tumor cell survival and growth. The molecular events controlling mitochondrial integrity that facilitate the development of hepatocellular carcinoma (HCC) remain unclear. Here, we report that UBX domain-containing protein 1 (UBXN1) hyperactivation is essential for mitochondrial homeostasis and liver tumorigenesis. Methods Oncogene-induced mouse liver tumor models were generated with the Sleeping Beauty (SB) transposon delivery system. Assessment of HCC cell growth in vivo and in vitro, including tumour formation, colony formation, TUNEL and FACS assays, was conducted to determine the effects of UBXN1 on HCC cells, as well as the involvement of the UBXN1-prohibitin (PHB) interaction in mitochondrial function. Coimmunoprecipitation (Co-IP) was used to assess the interaction between UBXN1 and PHB. Liver hepatocellular carcinoma (LIHC) datasets and HCC patient samples were used to assess the expression of UBXN1. Results UBXN1 expression is commonly upregulated in human HCCs and mouse liver tumors and is associated with poor overall survival in HCC patients. UBXN1 facilitates the growth of human HCC cells and promotes mouse liver tumorigenesis driven by the NRas/c-Myc or c-Myc/shp53 combination. UBXN1 interacts with the inner mitochondrial membrane protein PHB and sustains PHB expression. UBXN1 inhibition triggers mitochondrial damage and liver tumor cell apoptosis. Conclusions UBXN1 interacts with PHB and promotes mitochondrial homeostasis during liver tumorigenesis.

Funder

National Natural Science Foundation of China

Shanghai Rising-Star Program

Natural Science Foundation of Shanghai Municipality

State Key Laboratory of Systems Medicine for Cancer

Innovative Research Team of High-level Local University in Shanghai

Publisher

Springer Science and Business Media LLC

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