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RETRACTED: CYP3A5 Functions as a Tumor Suppressor in Hepatocellular Carcinoma by Regulating mTORC2/Akt Signaling
Feng Jiang1, Lei Chen2, Ying-Cheng Yang3
1International Co-operation Laboratory on Signal Transduction, Eastern Hepatobiliary Surgery Institute, Second Military Medical University, Shanghai, China. Department of Thoracic Surgery, Cancer Hospital of Jiangsu Province, Cancer Institution of Jiangsu Province, Affiliated Cancer Hospital of Nanjing Medical University, Nanjing, China. Jiangsu Key Laboratory of Molecular and Translational Cancer Research, Cancer Hospital of Jiangsu Province, Nanjing, China.
Abstract:
CYP3A5 is a cytochrome P450 protein that functions in the liver metabolism of many carcinogens and cancer drugs. However, it has not been thought to directly affect cancer progression. In this study, we challenge this perspective by demonstrating that CYP3A5 is downregulated in many hepatocellular carcinomas (HCC), where it has an important role as a tumor suppressor that antagonizes the malignant phenotype. CYP3A5 was downregulated in multiple cohorts of human HCC examined. Lower CYP3A5 levels were associated with more aggressive vascular invasion, poor differentiation, shorter time to disease recurrence after treatment, and worse overall patient survival. Mechanistic investigations showed that CYP3A5 overexpression limited MMP2/9 function and suppressed HCC migration and invasion in vitro and in vivo by inhibiting AKT signaling. Notably, AKT phosphorylation at Ser473 was inhibited in CYP3A5-overexpressing HCC cells, an event requiring mTORC2 but not Rictor/mTOR complex formation. CYP3A5-induced ROS accumulation was found to be a critical upstream regulator of mTORC2 activity, consistent with evidence of reduced GSH redox activity in most clinical HCC specimens with reduced metastatic capacity. Taken together, our results defined CYP3A5 as a suppressor of HCC pathogenesis and metastasis with potential utility a prognostic biomarker.
Insights
Cytochrome P450 3A5 (CYP3A5) acts as a tumor suppressor in liver cancer (HCC), inhibiting metastasis. Lower CYP3A5 levels correlate with aggressive disease and poor patient survival, indicating its prognostic potential.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Cytochrome P450 3A5 (CYP3A5) is involved in metabolizing carcinogens and drugs.
- CYP3A5 has not been previously recognized for its direct role in cancer progression.
Purpose of the Study:
- To investigate the role of CYP3A5 in hepatocellular carcinoma (HCC) pathogenesis.
- To determine if CYP3A5 functions as a tumor suppressor in HCC.
Main Methods:
- Analysis of CYP3A5 expression in human HCC cohorts.
- In vitro and in vivo experiments assessing HCC cell migration and invasion.
- Investigation of signaling pathways including AKT, mTORC2, and reactive oxygen species (ROS).
Main Results:
- CYP3A5 was found to be downregulated in human HCC tissues.
- Lower CYP3A5 levels correlated with increased vascular invasion, poor differentiation, and reduced patient survival.
- CYP3A5 overexpression suppressed HCC cell migration and invasion by inhibiting AKT signaling and modulating mTORC2 activity via ROS accumulation.
Conclusions:
- CYP3A5 acts as a tumor suppressor in HCC, antagonizing malignant phenotypes.
- CYP3A5 downregulation is linked to aggressive HCC and poor prognosis.
- CYP3A5 demonstrates potential as a prognostic biomarker for HCC.
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