TRIM65/NF2/YAP1 Signaling Coordinately Orchestrates Metabolic and Immune Advantages in Hepatocellular Carcinoma

Author:

Bian Zhixuan123,Xu Chang4,Wang Xiaoying5,Zhang Baohua4,Xiao Yixuan1,Liu Li1,Zhao Shasha4,Huang Nan4,Yang Fengjiao4,Zhang Yue6,Xue Shaobo6,Wang Xiongjun4,Pan Qiuhui123,Sun Fenyong4ORCID

Affiliation:

1. Department of Laboratory Medicine Shanghai Children's Medical Center School of Medicine Shanghai Jiao Tong University Shanghai 200127 China

2. Faculty of Medical Laboratory Science College of Health Science and Technology School of Medicine Shanghai jiao Tong University Shanghai 200025 China

3. Shanghai Key Laboratory of Clinical Molecular Diagnostics for Paediatrics Shanghai 200127 China

4. Department of Laboratory Medicine Shanghai Tenth People's Hospital of Tongji University Shanghai 200072 China

5. Department of liver surgery Zhongshan hospital Fudan University Shanghai 200030 China

6. Department of Central Laboratory Shanghai Tenth People's Hospital of Tongji University Shanghai 200072 China

Abstract

AbstractHepatocellular carcinoma (HCC) is one of the leading causes of cancer deaths worldwide. Significantly activated uridine nucleotide and fatty acid metabolism in HCC cells promote malignant proliferation and immune evasion. Herein, it is demonstrated that the tripartite motif 65 (TRIM65) E3 ubiquitin‐protein ligase, O‐GlcNAcylated via O‐GlcNAcylation transferase, is highly expressed in HCC and facilitated metabolic remodeling to promote the accumulation of products related to uracil metabolism and palmitic acid, driving the progression of HCC. Mechanistically, it is showed that TRIM65 mediates ubiquitylation at the K44 residue of neurofibromatosis type 2 (NF2), the key protein upstream of classical Hippo signaling. Accelerated NF2 degradation inhibits yes‐associated protein 1 phosphorylation, inducing aberrant activation of related metabolic enzyme transcription, and orchestrating metabolic and immune advantages. In conclusion, these results reveal a critical role for the TRIM family molecule TRIM65 in supporting HCC cell survival and highlight the therapeutic potential of targeting its E3 ligase activity to alter the regulation of proteasomal degradation.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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