Inducing and exploiting vulnerabilities for the treatment of liver cancer
Cun Wang1,2, Serena Vegna3, Haojie Jin1,2
1State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Abstract:
Liver cancer remains difficult to treat, owing to a paucity of drugs that target critical dependencies1,2; broad-spectrum kinase inhibitors such as sorafenib provide only a modest benefit to patients with hepatocellular carcinoma3. The induction of senescence may represent a strategy for the treatment of cancer, especially when combined with a second drug that selectively eliminates senescent cancer cells (senolysis)4,5. Here, using a kinome-focused genetic screen, we show that pharmacological inhibition of the DNA-replication kinase CDC7 induces senescence selectively in liver cancer cells with mutations in TP53. A follow-up chemical screen identified the antidepressant sertraline as an agent that kills hepatocellular carcinoma cells that have been rendered senescent by inhibition of CDC7. Sertraline suppressed mTOR signalling, and selective drugs that target this pathway were highly effective in causing the apoptotic cell death of hepatocellular carcinoma cells treated with a CDC7 inhibitor. The feedback reactivation of mTOR signalling after its inhibition6 is blocked in cells that have been treated with a CDC7 inhibitor, which leads to the sustained inhibition of mTOR and cell death. Using multiple in vivo mouse models of liver cancer, we show that treatment with combined inhibition of of CDC7 and mTOR results in a marked reduction of tumour growth. Our data indicate that exploiting an induced vulnerability could be an effective treatment for liver cancer.
Insights
Targeting DNA replication kinase CDC7 induces liver cancer cell senescence. The antidepressant sertraline then selectively kills these cells by blocking mTOR signaling, offering a novel liver cancer treatment strategy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Liver cancer, particularly hepatocellular carcinoma, has limited effective treatments.
- Existing therapies like sorafenib offer modest benefits.
- Inducing cellular senescence followed by senolysis presents a potential therapeutic strategy.
Purpose of the Study:
- To identify novel therapeutic targets for liver cancer.
- To investigate the role of CDC7 inhibition in inducing liver cancer cell senescence.
- To discover agents that selectively eliminate senescent liver cancer cells.
Main Methods:
- A kinome-focused genetic screen to identify CDC7 as a target.
- A chemical screen to identify senolytic agents, leading to sertraline.
- Inhibition of CDC7 and mTOR signaling pathways.
- In vivo mouse models of liver cancer.
Main Results:
- Pharmacological inhibition of CDC7 selectively induces senescence in TP53-mutated liver cancer cells.
- Sertraline was identified as a senolytic agent, selectively killing CDC7-inhibited senescent cells.
- Combined inhibition of CDC7 and mTOR signaling led to sustained mTOR suppression and apoptosis.
- Combination therapy significantly reduced tumor growth in mouse models.
Conclusions:
- Targeting CDC7 to induce senescence, followed by senolysis with agents like sertraline, is a promising strategy for liver cancer.
- The combination of CDC7 and mTOR inhibition demonstrates significant anti-tumor efficacy.
- Exploiting induced vulnerabilities offers a novel therapeutic approach for liver cancer treatment.
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