Shin Ai Hyang, Kil In Sup, Yang Eun Sun, Huh Tae Lin, Yang Chae Ha, Park Jeen-Woo
Department of Biochemistry, College of Natural Sciences, Kyungpook National University, Taegu 702-701, Republic of Korea.
Biochem Biophys Res Commun. 2004 Dec 3;325(1):32-8. doi: 10.1016/j.bbrc.2004.09.218.
A high concentration of glucose has been implicated as a causal factor in initiation and progression of diabetic kidney complications, and there is evidence to suggest that hyperglycemia increases the production of free radicals and oxidant stress. Recently, we demonstrated that the control of mitochondrial redox balance and the cellular defense against oxidative damage is one of the primary functions of mitochondrial NADP(+)-dependent isocitrate dehydrogenase (IDPm) to supply NADPH for antioxidant systems. In this report, we demonstrate that modulation of IDPm activity in HEK293 cells, an embryonic kidney cell line, regulates high glucose-induced apoptosis. When we examined the protective role of IDPm against high glucose-induced apoptosis with HEK293 cells transfected with the cDNA for mouse IDPm in sense and antisense orientations, a clear inverse relationship was observed between the amount of IDPm expressed in target cells and their susceptibility to apoptosis. The results suggest that IDPm plays an important protective role in apoptosis of HEK293 cells induced by a high concentration of glucose and may contribute to various pathologies associated with the long-term complications of diabetes.
高浓度葡萄糖被认为是糖尿病肾脏并发症发生和发展的一个致病因素,并且有证据表明高血糖会增加自由基的产生和氧化应激。最近,我们证明线粒体氧化还原平衡的控制以及细胞对氧化损伤的防御是线粒体NADP(+)-依赖型异柠檬酸脱氢酶(IDPm)的主要功能之一,该酶为抗氧化系统提供NADPH。在本报告中,我们证明在胚胎肾细胞系HEK293细胞中调节IDPm活性可调控高糖诱导的细胞凋亡。当我们用 sense和antisense方向的小鼠IDPm cDNA转染HEK293细胞来检测IDPm对高糖诱导凋亡的保护作用时,在靶细胞中表达的IDPm量与其对凋亡的敏感性之间观察到明显的负相关关系。结果表明,IDPm在高浓度葡萄糖诱导的HEK293细胞凋亡中起重要的保护作用,并且可能与糖尿病长期并发症相关的各种病理状况有关。