Department of Biochemistry and Chemistry, La Trobe Institute for Molecular Science, La Trobe University, Bundoora, VIC, Australia.
Sci Rep. 2023 Feb 22;13(1):3095. doi: 10.1038/s41598-023-29464-5.
Pyroptosis is a lytic form of programmed cell death induced by the activation of gasdermins. The precise mechanism of gasdermin activation by upstream proteases remains incompletely understood. Here, we reconstituted human pyroptotic cell death in yeast by inducible expression of caspases and gasdermins. Functional interactions were reflected by the detection of cleaved gasdermin-D (GSDMD) and gasdermin-E (GSDME), plasma membrane permeabilization, and reduced growth and proliferative potential. Following overexpression of human caspases-1, -4, -5, and -8, GSDMD was cleaved. Similarly, active caspase-3 induced proteolytic cleavage of co-expressed GSDME. Caspase-mediated cleavage of GSDMD or GSDME liberated the ~ 30 kDa cytotoxic N-terminal fragments of these proteins, permeabilized the plasma membrane and compromised yeast growth and proliferation potential. Interestingly, the observation of yeast lethality mediated by co-expression of caspases-1 or -2 with GSDME signified functional cooperation between these proteins in yeast. The small molecule pan-caspase inhibitor Q-VD-OPh reduced caspase-mediated yeast toxicity, allowing us to expand the utility of this yeast model to investigate the activation of gasdermins by caspases that would otherwise be highly lethal to yeast. These yeast biological models provide handy platforms to study pyroptotic cell death and to screen for and characterize potential necroptotic inhibitors.
细胞焦亡是一种由 Gasdermins 激活诱导的细胞程序性死亡的溶解形式。上游蛋白酶激活 Gasdermins 的精确机制仍不完全清楚。在这里,我们通过诱导表达 Caspases 和 Gasdermins 在酵母中重建了人类细胞焦亡。功能相互作用反映在检测到的裂解 Gasdermin-D (GSDMD) 和 Gasdermin-E (GSDME)、质膜通透性以及生长和增殖潜力降低。在过表达人 Caspases-1、-4、-5 和 -8 后,GSDMD 被切割。同样,活性 Caspase-3 诱导共表达的 GSDME 的蛋白水解切割。Caspase 介导的 GSDMD 或 GSDME 的切割释放了这些蛋白质的~30 kDa 细胞毒性 N 端片段,使质膜通透并损害酵母生长和增殖潜力。有趣的是,观察到 Caspases-1 或 -2 与 GSDME 共表达介导的酵母致死性表明这些蛋白质在酵母中具有功能合作。小分子泛 Caspase 抑制剂 Q-VD-OPh 降低了 Caspase 介导的酵母毒性,使我们能够扩展该酵母模型的用途,以研究 Caspases 激活 Gasdermins 的机制,否则 Caspases 对酵母具有高度致死性。这些酵母生物模型为研究细胞焦亡提供了便利的平台,并可用于筛选和表征潜在的坏死性抑制剂。