Department of Neurology, Nanjing Drum Tower Hospital, Medical School and the State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing, Jiangsu 210008, China.
Institute of Brain Sciences, Institute of Brain Disorder Translational Medicine, Nanjing University, Nanjing, Jiangsu 210008, China.
J Immunol. 2022 Aug 15;209(4):820-828. doi: 10.4049/jimmunol.2100977. Epub 2022 Jul 29.
Pyroptosis is a key inflammatory form of cell death participating in the progression of many inflammatory diseases, such as experimental autoimmune encephalomyelitis (EAE) and sepsis. Identification of small molecules to inhibit pyroptosis is emerging as an attractive strategy. In this study, we performed a screening based on in silico docking of compounds on the reported Gasdermin D (GSDMD) three-dimensional structure and found C202-2729 demonstrated strong anti-inflammatory effects in both endotoxin shock and EAE mouse models. Oral administration of C202-2729 was capable of attenuating EAE disease severity significantly and has the comparable effects to teriflunomide, the first-line clinical drug of multiple sclerosis. We found C202-2729 remarkably suppressed macrophage and T cell-associated immune inflammation. Mechanistically, C202-2729 neither impact GSDMD cleavage nor the upstream inflammasome activation in mouse immortalized bone marrow-derived macrophages. However, C202-2729 exposure significantly repressed the IL-1β secretion and cell pyroptosis. We found C202-2729 directly bonds to the N terminus of GSDMD and blocks the migration of the N-terminal GSDMD fragment to cell membrane, restraining the pore-forming and mature IL-1β release. Collectively, our findings provide a new molecule with the potential for translational application in GSDMD-associated inflammatory diseases.
细胞焦亡是参与多种炎症性疾病进展的关键炎症形式,如实验性自身免疫性脑脊髓炎(EAE)和败血症。鉴定抑制细胞焦亡的小分子已成为一种有吸引力的策略。在这项研究中,我们基于报告的 GSDMD 三维结构对化合物进行了计算机对接筛选,发现 C202-2729 在脂多糖休克和 EAE 小鼠模型中均具有很强的抗炎作用。C202-2729 的口服给药能够显著减轻 EAE 疾病的严重程度,其效果可与多发性硬化症的一线临床药物特立氟胺相媲美。我们发现 C202-2729 显著抑制了巨噬细胞和 T 细胞相关的免疫炎症。在机制上,C202-2729 既不影响 GSDMD 的切割,也不影响小鼠永生化骨髓来源巨噬细胞中的上游炎性小体激活。然而,C202-2729 暴露显著抑制了 IL-1β 的分泌和细胞焦亡。我们发现 C202-2729 直接与 GSDMD 的 N 端结合,并阻止 N 端 GSDMD 片段向细胞膜的迁移,从而阻止了孔形成和成熟的 IL-1β 的释放。总之,我们的研究结果提供了一种具有在 GSDMD 相关炎症性疾病中转化应用潜力的新分子。