Laboratory of Chromatin Biology, Department of Biological Sciences, Indian Institute of Science Education and Research, Bhopal 462023, India.
FEBS Open Bio. 2014 Jan 6;4:77-89. doi: 10.1016/j.fob.2014.01.002. eCollection 2014.
Ebselen is a synthetic, lipid-soluble seleno-organic compound. The high electrophilicity of ebselen enables it to react with multiple cysteine residues of various proteins. Despite extensive research on ebselen, its target molecules and mechanism of action remains less understood. We performed biochemical as well as in vivo experiments employing budding yeast as a model organism to understand the mode of action of ebselen. The growth curve analysis and FACS (florescence activated cell sorting) assays revealed that ebselen exerts growth inhibitory effects on yeast cells by causing a delay in cell cycle progression. We observed that ebselen exposure causes an increase in intracellular ROS levels and mitochondrial membrane potential, and that these effects were reversed by addition of antioxidants such as reduced glutathione (GSH) or N-acetyl-l-cysteine (NAC). Interestingly, a significant increase in ROS levels was noticed in gdh3-deleted cells compared to wild-type cells. Furthermore, we showed that ebselen inhibits GDH function by interacting with its cysteine residues, leading to the formation of inactive hexameric GDH. Two-dimensional gel electrophoresis revealed protein targets of ebselen including CPR1, the yeast homolog of Cyclophilin A. Additionally, ebselen treatment leads to the inhibition of yeast sporulation. These results indicate a novel direct connection between ebselen and redox homeostasis.
依布硒啉是一种合成的脂溶性硒有机化合物。依布硒啉的高亲电性使其能够与多种蛋白质的多个半胱氨酸残基发生反应。尽管对依布硒啉进行了广泛的研究,但它的靶分子和作用机制仍不太清楚。我们使用 budding yeast 作为模型生物进行了生化和体内实验,以了解依布硒啉的作用模式。生长曲线分析和 FACS(荧光激活细胞分选)实验表明,依布硒啉通过延迟细胞周期进程对酵母细胞产生生长抑制作用。我们观察到依布硒啉暴露会导致细胞内 ROS 水平和线粒体膜电位升高,而添加抗氧化剂如还原型谷胱甘肽 (GSH) 或 N-乙酰-l-半胱氨酸 (NAC) 可以逆转这些效应。有趣的是,与野生型细胞相比,gdh3 缺失细胞中的 ROS 水平显着升高。此外,我们表明依布硒啉通过与 GDH 的半胱氨酸残基相互作用抑制 GDH 功能,导致无活性六聚体 GDH 的形成。二维凝胶电泳显示了依布硒啉的蛋白质靶标,包括 CPR1,即 Cyclophilin A 的酵母同源物。此外,依布硒啉处理会导致酵母产孢抑制。这些结果表明依布硒啉与氧化还原稳态之间存在新的直接联系。