School of Science, Monash University Malaysia, Jalan Lagoon Selatan, 46150, Bandar Sunway, Selangor Darul Ehsan, Malaysia.
Naunyn Schmiedebergs Arch Pharmacol. 2018 Jan;391(1):71-82. doi: 10.1007/s00210-017-1436-6. Epub 2017 Oct 31.
The cathepsin B inhibitor benzyloxycarbonyl-phenylalanine-alanine-chloromethyl ketone (z-FA-CMK) was recently found to induce apoptosis at low concentrations in Jurkat T cells, while at higher concentrations, the cells die of necrosis. In the present study, we showed that z-FA-CMK readily depletes intracellular glutathione (GSH) with a concomitant increase in reactive oxygen species (ROS) generation. The toxicity of z-FA-CMK in Jurkat T cells was completely abrogated by N-acetylcysteine (NAC), suggesting that the toxicity mediated by z-FA-CMK is due to oxidative stress. We found that L-buthionine sulfoximine (BSO) which depletes intracellular GSH through the inhibition of GSH biosynthesis in Jurkat T cells did not promote ROS increase or induce cell death. However, NAC was still able to block z-FA-CMK toxicity in Jurkat T cells in the presence of BSO, indicating that the protective effect of NAC does not involve GSH biosynthesis. This is further corroborated by the protective effect of the non-metabolically active D-cysteine on z-FA-CMK toxicity. Furthermore, in BSO-treated cells, z-FA-CMK-induced ROS increased which remains unchanged, suggesting that the depletion of GSH and increase in ROS generation mediated by z-FA-CMK may be two separate events. Collectively, our results demonstrated that z-FA-CMK toxicity is mediated by oxidative stress through the increase in ROS generation.
苯甲酰基-苯丙氨酸-丙氨酸-氯甲基酮(Z-FA-CMK)是一种组织蛋白酶 B 抑制剂,最近有研究发现其能在低浓度下诱导 Jurkat T 细胞凋亡,而在较高浓度下则会导致细胞坏死。本研究表明,Z-FA-CMK 可迅速耗竭细胞内谷胱甘肽(GSH),同时增加活性氧(ROS)的产生。N-乙酰半胱氨酸(NAC)完全阻断了 Z-FA-CMK 在 Jurkat T 细胞中的毒性,表明 Z-FA-CMK 介导的毒性是由于氧化应激所致。我们发现,L-丁硫氨酸亚砜亚胺(BSO)通过抑制 Jurkat T 细胞内 GSH 的生物合成来耗竭细胞内 GSH,但不会促进 ROS 的增加或诱导细胞死亡。然而,在 BSO 存在的情况下,NAC 仍能阻断 Z-FA-CMK 在 Jurkat T 细胞中的毒性,表明 NAC 的保护作用不涉及 GSH 的生物合成。这一结果进一步得到了非代谢活性 D-半胱氨酸对 Z-FA-CMK 毒性的保护作用的证实。此外,在 BSO 处理的细胞中,Z-FA-CMK 诱导的 ROS 增加不变,表明 Z-FA-CMK 介导的 GSH 耗竭和 ROS 生成增加可能是两个独立的事件。综上所述,我们的研究结果表明,Z-FA-CMK 的毒性是通过增加 ROS 生成介导的氧化应激所致。