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Novel Pt(IV) complex OAP2 induces STING activation and pyroptosis via mitochondrial membrane remodeling for
Renming Fan1,2, Ruizhuo Lin1,2, Shuo Zhang3
1Institute of Medical Research, Northwestern Polytechnical University, Xi'an 710072, China.
Abstract:
Mitochondrial membrane remodeling can trigger the release of mitochondrial DNA (mtDNA), leading to the activation of cellular oxidative stress and immune responses. While the role of mitochondrial membrane remodeling in promoting inflammation in hepatocytes is well-established, its effects on tumors have remained unclear. In this study, we designed a novel Pt(IV) complex, OAP2, which is composed of oxaliplatin (Oxa) and acetaminophen (APAP), to enhance its anti-tumor effects and amplify the immune response. Our findings demonstrate that OAP2 induces nuclear DNA damage, resulting in the production of nuclear DNA. Additionally, OAP2 downregulates the expression of mitochondrial Sam50, to promote mitochondrial membrane remodeling and trigger mtDNA secretion, leading to double-stranded DNA accumulation and ultimately synergistically activating the intracellular cGAS-STING pathway. The mitochondrial membrane remodeling induced by OAP2 overcomes the limitations of Oxa in activating the STING pathway and simultaneously promotes gasdermin-D-mediated cell pyroptosis. OAP2 also promotes dendritic cell maturation and enhances the quantity and efficacy of cytotoxic T cells, thereby inhibiting cancer cell proliferation and metastasis. Briefly, our study introduces the first novel small-molecule inhibitor that regulates mitochondrial membrane remodeling for active immunotherapy in anti-tumor research, which may provide a creative idea for targeting organelle in anti-tumor therapy.
Insights
A novel drug, OAP2, triggers mitochondrial membrane remodeling to release mitochondrial DNA (mtDNA). This activates anti-tumor immunity and cell death, offering a new strategy for cancer therapy.
Area of Science:
- Biochemistry
- Immunology
- Oncology
Background:
- Mitochondrial membrane remodeling releases mitochondrial DNA (mtDNA), activating immune responses.
- The role of mitochondrial membrane remodeling in tumors is not well understood.
Purpose of the Study:
- To investigate the anti-tumor effects of a novel Pt(IV) complex, OAP2, composed of oxaliplatin and acetaminophen.
- To explore OAP2's mechanism in regulating mitochondrial membrane remodeling and activating anti-tumor immunity.
Main Methods:
- Designed and synthesized the novel Pt(IV) complex OAP2.
- Investigated OAP2's effects on nuclear DNA damage, mitochondrial Sam50 expression, and mtDNA release.
- Assessed OAP2's impact on the cGAS-STING pathway, pyroptosis, and anti-tumor immune responses.
Main Results:
- OAP2 induces nuclear DNA damage and downregulates mitochondrial Sam50, promoting membrane remodeling and mtDNA secretion.
- OAP2 activates the intracellular cGAS-STING pathway and gasdermin-D-mediated pyroptosis.
- OAP2 enhances dendritic cell maturation and cytotoxic T cell activity, inhibiting tumor progression.
Conclusions:
- OAP2 is the first small-molecule inhibitor targeting mitochondrial membrane remodeling for active immunotherapy.
- OAP2 offers a novel strategy for organelle-targeted anti-tumor therapy by synergistically activating immune responses and cell death.
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