Department of Genetic Engineering, Cheongju University, Cheongju 360-764, Korea.
BMB Rep. 2013 Apr;46(4):225-9. doi: 10.5483/bmbrep.2013.46.4.225.
Methylglyoxal (MG) is an endogenous metabolite which is present in increased concentrations in diabetics and reacts with amino acids to form advanced glycation end products. In this study, we investigated whether ferritin enhances DNA cleavage by the reaction of MG with lysine. When plasmid DNA was incubated with MG and lysine in the presence of ferritin, DNA strand breakage was increased in a dose-dependent manner. The ferritin/MG/lysine system-mediated DNA cleavage was significantly inhibited by reactive oxygen species (ROS) scavengers. These results indicated that ROS might participate in the ferritin/MG/lysine system-mediated DNA cleavage. Incubation of ferritin with MG and lysine resulted in a time-dependent release of iron ions from the protein molecules. Our data suggest that DNA cleavage caused by the ferritin/MG/lysine system via the generation of ROS by the Fenton-like reaction of free iron ions released from oxidatively damaged ferritin.
甲基乙二醛(MG)是一种内源性代谢物,在糖尿病患者中浓度升高,与氨基酸反应形成晚期糖基化终产物。在这项研究中,我们研究了铁蛋白是否通过 MG 与赖氨酸的反应增强 DNA 断裂。当质粒 DNA 与 MG 和赖氨酸在铁蛋白存在下孵育时,DNA 链断裂呈剂量依赖性增加。铁蛋白/MG/赖氨酸系统介导的 DNA 断裂被活性氧(ROS)清除剂显著抑制。这些结果表明,ROS 可能参与铁蛋白/MG/赖氨酸系统介导的 DNA 断裂。铁蛋白与 MG 和赖氨酸孵育导致铁蛋白分子从蛋白质中释放铁离子的时间依赖性。我们的数据表明,铁蛋白/MG/赖氨酸系统通过从氧化损伤的铁蛋白中释放的游离铁离子的 Fenton 样反应产生 ROS 导致 DNA 断裂。