Graduate Center for Toxicology, University of Kentucky, Lexington, KY 40536, USA.
Free Radic Biol Med. 2012;52(11-12):2209-22. doi: 10.1016/j.freeradbiomed.2012.03.009. Epub 2012 Apr 25.
Mitochondria are the power plants of the eukaryotic cell and the integrators of many metabolic activities and signaling pathways important for the life and death of a cell. Normal aerobic cells use oxidative phosphorylation to generate ATP, which supplies energy for metabolism. To drive ATP production, electrons are passed along the electron transport chain, with some leaking as superoxide during the process. It is estimated that, during normal respiration, intramitochondrial superoxide concentrations can reach 10⁻¹² M. This extremely high level of endogenous superoxide production dictates that mitochondria are equipped with antioxidant systems that prevent consequential oxidative injury to mitochondria and maintain normal mitochondrial functions. The major antioxidant enzyme that scavenges superoxide anion radical in mitochondria is manganese superoxide dismutase (MnSOD). Extensive studies on MnSOD have demonstrated that MnSOD plays a critical role in the development and progression of cancer. Many human cancer cells harbor low levels of MnSOD proteins and enzymatic activity, whereas some cancer cells possess high levels of MnSOD expression and activity. This apparent variation in MnSOD level among cancer cells suggests that differential regulation of MnSOD exists in cancer cells and that this regulation may be linked to the type and stage of cancer development. This review summarizes current knowledge of the relationship between MnSOD levels and cancer with a focus on the mechanisms regulating MnSOD expression.
线粒体是真核细胞的“动力工厂”,也是许多代谢活动和信号通路的整合者,这些活动和通路对细胞的生死存亡至关重要。正常需氧细胞利用氧化磷酸化产生 ATP,为代谢提供能量。为了驱动 ATP 的产生,电子沿着电子传递链传递,在此过程中有些电子会漏出形成超氧自由基。据估计,在正常呼吸过程中,线粒体内部的超氧自由基浓度可达 10⁻¹² M。这种极高水平的内源性超氧自由基产生决定了线粒体配备了抗氧化系统,以防止线粒体发生氧化损伤,并维持正常的线粒体功能。在线粒体中清除超氧阴离子自由基的主要抗氧化酶是锰超氧化物歧化酶(MnSOD)。对 MnSOD 的广泛研究表明,MnSOD 在癌症的发生和发展中起着关键作用。许多人类癌细胞中的 MnSOD 蛋白和酶活性水平较低,而一些癌细胞则具有高水平的 MnSOD 表达和活性。这种癌细胞中 MnSOD 水平的明显差异表明,癌细胞中存在 MnSOD 的差异调节,这种调节可能与癌症的类型和发展阶段有关。本文综述了 MnSOD 水平与癌症之间关系的现有知识,重点介绍了调节 MnSOD 表达的机制。