Van Kessel Antonius T M, Karimi Ryan, Cosa Gonzalo
Department of Chemistry, McGill University 801 Sherbrooke Street West Montreal Quebec H3A 0B8 Canada
Chem Sci. 2022 Aug 1;13(33):9727-9738. doi: 10.1039/d2sc00525e. eCollection 2022 Aug 24.
The central mechanism in ferroptosis linking lipid hydroperoxide accumulation with cell death remains poorly understood. Although lipid hydroperoxides are known to break down to reactive lipid-derived electrophiles (LDEs), the ability of cells to detoxify increasing LDE levels during ferroptosis has not been studied. Here, we developed an assay (ElectrophileQ) correlating the cellular retention excretion of a fluorogenic lipophilic electrophile (AcroB) that enables live-cell assessment of the glutathione-mediated LDE conjugation and adduct export steps of the LDE detoxification pathway. This method revealed that during ferroptosis, LDE detoxification failure occurs through decreased conjugation or export impairment, amplifying cellular electrophile accumulation. Notably, ferroptosis susceptibility was increased following exacerbation of LDE-adduct export impairment through export channel inhibition. Our results expand understanding of the ferroptosis molecular cell death mechanism to position the LDE detoxification pathway as a ferroptosis-relevant therapeutic target. We envision the ElectrophileQ assay becoming an invaluable tool for studying ferroptosis and cellular health.
铁死亡中将脂质氢过氧化物积累与细胞死亡联系起来的核心机制仍未得到充分理解。虽然已知脂质氢过氧化物会分解为反应性脂质衍生亲电试剂(LDEs),但在铁死亡过程中细胞解毒不断增加的LDE水平的能力尚未得到研究。在这里,我们开发了一种检测方法(ElectrophileQ),该方法将一种荧光亲脂性亲电试剂(AcroB)的细胞保留与排泄相关联,从而能够对谷胱甘肽介导的LDE解毒途径的LDE共轭和加合物输出步骤进行活细胞评估。该方法表明,在铁死亡过程中,LDE解毒失败是通过共轭减少或输出受损而发生的,从而放大了细胞亲电试剂的积累。值得注意的是,通过抑制输出通道加剧LDE加合物输出受损后,铁死亡易感性增加。我们的结果扩展了对铁死亡分子细胞死亡机制的理解,将LDE解毒途径定位为与铁死亡相关的治疗靶点。我们设想ElectrophileQ检测方法将成为研究铁死亡和细胞健康的宝贵工具。