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Rewiring Pyroptosis to Potentiate Cancer Immunotherapy via a Gasdermin D Agonist Bypassing Caspase-3
Dan Zhao1, Lingling Zhang1, Yue Wen2
1National Engineering Research Center for Nanomedicine, College of Life Science and Technology and Key Laboratory of Molecular Biophysics of the Ministry of Education, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Pyroptosis holds great promise for evoking robust anti-tumor immunity, but many pyroptosis induction strategies rely on caspase-3 (Casp-3) activation and face challenges of the immunosuppressive nature of apoptosis and the frequent silencing of gasdermin E (GSDME), a substrate of Casp-3, in tumors. Here, we report a strategy to rewire the pyroptotic pathway by bypassing Casp-3 to directly activate gasdermin D (GSDMD). We identify a small-molecule agonist, (E)-2,3-diiodobut-2-ene-1,4-diol (DIBDO), which undergoes deiodination to release iodide ions upon activation by the tumor-abundant nucleophile glutathione, thereby catalytically generating singlet oxygen and molecular iodine. This cascade induces oxidative damage that downregulates key mediators of caspase-9 and caspase-8 pathways, thereby down-regulating Casp-3 activation. This mechanism selectively triggers GSDMD-mediated pyroptosis, provoking robust immunogenic cell death and inflammatory cytokine release to reconfigure the tumor immune microenvironment. In murine tumor models, DIBDO enhances tumor infiltration of cytotoxic T cells and synergizes with checkpoint blockade therapy to suppress both primary and distal tumors. It can also serve as an in situ or exogenous vaccine to elicit potent and durable antitumor immunity. This work presents a paradigm-shifting approach to cancer immunotherapy by decoupling pyroptosis from Casp-3 dependence, offering a promising avenue to expand the scope of immunogenic cell death-based treatments.
Insights
This study introduces a novel pyroptosis induction strategy that bypasses caspase-3 activation, using a small molecule to trigger gasdermin D-mediated cell death. This approach enhances anti-tumor immunity and shows promise for cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Pyroptosis is a promising cancer immunotherapy strategy.
- Current methods often rely on caspase-3 activation.
- Tumor cells frequently exhibit apoptosis and gasdermin E silencing, limiting efficacy.
Purpose of the Study:
- To develop a Caspase-3-independent pyroptosis induction method.
- To bypass tumor-associated resistance mechanisms.
- To enhance anti-tumor immunity and immunotherapy outcomes.
Main Methods:
- Identified a small-molecule agonist, (E)-2,3-diiodobut-2-ene-1,4-diol (DIBDO).
- DIBDO activates via glutathione-mediated deiodination, generating reactive oxygen species.
- Investigated DIBDO's mechanism in downregulating caspase pathways and activating gasdermin D.
Main Results:
- DIBDO selectively triggers gasdermin D-mediated pyroptosis, bypassing caspase-3.
- This induces immunogenic cell death and cytokine release, reconfiguring the tumor immune microenvironment.
- In murine models, DIBDO enhanced cytotoxic T cell infiltration and synergized with checkpoint blockade therapy.
Conclusions:
- Decoupling pyroptosis from caspase-3 dependence offers a new cancer immunotherapy paradigm.
- DIBDO demonstrates potential as an in situ or exogenous vaccine for durable anti-tumor immunity.
- This strategy expands the scope of immunogenic cell death-based cancer treatments.
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