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Mutant Kras and mTOR crosstalk drives hepatocellular carcinoma development via PEG3/STAT3/BEX2 signaling
Yuan-Deng Luo1, Xiao-Yu Liu2, Lei Fang1
1Key Laboratory of Hepatobiliary and Pancreatic Surgery, Institute of Hepatobiliary Surgery, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, 400038, China.
Abstract:
Background & Aims: Abnormal activation of mTOR through loss of tuberous sclerosis complex (Tsc) frequently occurs in hepatocellular carcinoma (HCC). Mutant Kras could induce aggressive HCCs. Here, we aim to identify the predictive or prognostic biomarkers for HCC patients with Kras mutant and mTOR hyperactivation, and to provide potential therapeutic approaches for this subtype of HCCs. Methods: We generated transgenic mice in which hepatocytic mTOR was hyperactivated through Tsc1 insufficiency with or without oncogenic KrasG12D. Bioinformatics and gain- or loss-of-function studies were used to illustrate the mechanisms underlying oncogenic pathway alterations. Transcriptional profiling was used to identify biomarker for the subtype of HCC. The therapeutic efficacy of targeting mTOR was tested in a liver orthotropic homogeneous murine model. Results: Oncogenic KrasG12D facilitated mTOR activation via the Mek/Erk/ROS axis, leading to HCC tumorigenesis and metastasis. Inhibition of Mek/Erk enhanced the anticancer effect of mTOR inhibitor via reduction of mTOR activity. Paternally expressed 3 (PEG3) was responsible for Kras/Erk- and mTOR-driven HCC. Elevated PEG3 protein interacted with STAT3 and promoted its transcriptional activity, resulting in the upregulation of proliferation- and metastasis-related proteins. Targeting mTOR significantly inhibited these actions in vitro and in vivo. Moreover, in clinical samples, PEG3 was identified as a new poor prognostic marker for HCC patients with Kras/Erk and mTOR hyperactivation. Conclusion: These findings reveal the underlying mechanism of hepatocytic Kras/Erk-driven mTOR activation and its downstream targets (PEG3 and STAT3) in HCC, identify PEG3 as a new prognostic biomarker for HCC with Kras/Erk and mTOR hyperactivation, and provide a potential therapeutic strategy for this subset of HCC patients.
Insights
We identified Paternally Expressed 3 (PEG3) as a poor prognostic biomarker in hepatocellular carcinoma (HCC) with Kras/Erk and mTOR hyperactivation. Targeting mTOR offers a potential therapeutic strategy for this aggressive HCC subtype.
Area of Science:
- Hepatocellular Carcinoma (HCC) Pathogenesis
- Oncogenic Signaling Pathways
- Biomarker Discovery
Background:
- Aberrant mTOR activation due to tuberous sclerosis complex (Tsc) loss is common in HCC.
- Mutant Kras can drive aggressive HCC development and metastasis.
- Need for biomarkers and therapies for HCC with Kras mutations and mTOR hyperactivation.
Purpose of the Study:
- Identify predictive/prognostic biomarkers for HCC with Kras mutant and mTOR hyperactivation.
- Investigate mechanisms of Kras/Erk and mTOR signaling in HCC.
- Evaluate therapeutic strategies targeting mTOR in this HCC subtype.
Main Methods:
- Generated transgenic mouse models with hepatocytic mTOR hyperactivation and/or oncogenic KrasG12D.
- Utilized bioinformatics, gain/loss-of-function studies, and transcriptional profiling.
- Assessed therapeutic efficacy of mTOR inhibition in a murine liver orthotopic model.
Main Results:
- Oncogenic KrasG12D promoted HCC tumorigenesis and metastasis via the Mek/Erk/ROS axis, enhancing mTOR activation.
- Paternally expressed 3 (PEG3) was identified as a key mediator, interacting with STAT3 to drive proliferation and metastasis.
- PEG3 emerged as a poor prognostic marker in clinical HCC samples with Kras/Erk and mTOR hyperactivation.
Conclusions:
- Elucidated the mechanism of Kras/Erk-driven mTOR activation and its downstream effectors (PEG3, STAT3) in HCC.
- Established PEG3 as a novel prognostic biomarker for a specific subset of HCC patients.
- Demonstrated the potential of mTOR-targeting therapy for this aggressive HCC subtype.
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