Emestrin-Type Epidithiodiketopiperazines Inhibited Gasdermin D-Mediated Pyroptosis via Caspase-3/7 Activation

  • MedComm (2020). 2026 Jan 13;7(1):e70548. doi: 10.1002/mco2.70548.
Bingchuan Geng  1  2  3  4 Shuang Lin  1  5 Wai Yen Yim  4 Weiguang Sun  1 Xiaotian Zhang  1 Cao Ma  2 Zhiwen Zhang  2 Quan Guo  2 Jie Gao  1 Hanxiao Zeng  1 Qingyi Tong  1 Yixuan Wang  4 Zhengfeng Fan  4 Jincheng Hou  4 Muwei Li  2  3 Yonghui Zhang  1 Zhengxi Hu  1  6  7
Affiliations
  • 1. Hubei Key Laboratory of Natural Medicinal Chemistry and Resource Evaluation, School of Pharmacy Tongji Medical College, Huazhong University of Science and Technology Wuhan China.
  • 2. Fuwai Central China Cardiovascular Hospital Central China Fuwai Hospital of Zhengzhou University Zhengzhou China.
  • 3. Henan Provincial Clinical Research Center For Cardiovascular Disease Zhengzhou China.
  • 4. Department of Cardiovascular Surgery Union Hospital Tongji Medical College Huazhong University of Science and Technology Wuhan China.
  • 5. Institute of Pharmaceutical Process Hubei Province Key Laboratory of Occupational Hazard Identification and Control School of Medicine Wuhan University of Science and Technology Wuhan China.
  • 6. Hubei Shizhen Laboratory Wuhan China.
  • 7. Hubei Jiangxia Laboratory Wuhan China.
Abstract

Sepsis, a life-threatening dysregulated host response to Infection, is frequently exacerbated by pyroptosis-a programmed, proinflammatory cell death process mediated by Gasdermin D (GSDMD) activation. Using high-throughput screening, we identified emestrin-type epidithiodiketopiperazines (ETPs) as potent inhibitors of GSDMD cleavage during Pyroptosis in Tohoku Hospital Pediatrics-1 (THP-1, a human acute monocytic Leukemia cell line)-derived macrophages. Combined surface plasmon resonance and western blotting analyses demonstrated that these ETPs activate Caspase-3/7, which in turn cleaves GSDMD at aspartic acid residue 87 to generate a p10 fragment. This process prevents the formation of the pore-forming p30 fragment, thereby mitigating its associated inflammatory effects. Building on these results, in vivo studies showed that a low dose of the lead emestrin-type ETP (compound 2) protected against lethal lipopolysaccharide (LPS)-induced septic shock and attenuated lung inflammation. This protective effect was further validated in the clinically relevant cecal ligation and puncture (CLP) model, where compound 2 significantly enhanced survival by suppressing the infiltration of GSDMD-positive neutrophils and monocytes. scRNA-seq of murine lung tissue showed that compound 2 suppressed LPS-induced systemic inflammation by inhibiting moDC maturation. Collectively, these findings establish the therapeutic potential of targeting GSDMD-driven Pyroptosis with ETPs in sepsis and suggest their promise for clinical translation.

Keywords
apoptosis; gasdermin D; high‐throughput screening; pyroptosis; sepsis.
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