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Updated: Jun 11, 2026

Non-Invasive PET/MR Imaging in an Orthotopic Mouse Model of Hepatocellular Carcinoma
Published on: August 31, 2022
MRPL3 enhances mitochondrial function via the TOMM40/PGC-1α/TFAM axis to drive early recurrence in hepatocellular
Shubin Wang1, Wuhan Yang2, Teng Pan3
1Department of General Medicine, The Fourth Hospital of Hebei Medical University, Shijiazhuang, PR China.
Abstract:
Early recurrence after curative resection remains a major obstacle to improving outcomes in hepatocellular carcinoma (HCC). Given the pivotal role of mitochondrial reprogramming in tumor progression, we investigated the contribution of mitochondrial ribosomal protein L3 (MRPL3) to postoperative early recurrence and its underlying mechanisms. Label-free quantitative proteomic profiling of HCC tissues identified MRPL3 as a recurrence-associated candidate. Its overexpression in HCC was confirmed by qRT-PCR, western blotting, and immunohistochemistry, and correlated with poor disease-free and overall survival. Functional assays demonstrated that MRPL3 enhances HCC cell proliferation, migration, and invasion both in vitro and in vivo by improving mitochondrial respiration, membrane potential, and ATP production while reducing reactive oxygen species levels. Mechanistically, MRPL3 associates with TOMM40, a core component of the mitochondrial outer membrane translocase complex, through its ΔR1 (1-174 aa) region and the ΔR2 (181-361 aa) domain of TOMM40, forming a protein complex that contributes to the activation of the PGC-1α/TFAM signaling pathway. Disruption of this axis abrogated the metabolic and oncogenic effects of MRPL3. Collectively, these findings identify MRPL3 as a key mitochondrial regulator that promotes metabolic reprogramming and drives early recurrence of HCC through the TOMM40/PGC-1α/TFAM axis, suggesting its potential as a prognostic biomarker and therapeutic target to prevent postoperative relapse.
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