Li T K, Liu L F
Department of Pharmacology, UMDNJ-Robert Wood Johnson Medical School, 675 Hoes Lane, Piscataway, New Jersey 08854, USA.
Annu Rev Pharmacol Toxicol. 2001;41:53-77. doi: 10.1146/annurev.pharmtox.41.1.53.
DNA topoisomerases are double-edged swords. They are essential for many vital functions of DNA during normal cell growth. However, they are also highly vulnerable under various physiological and nonphysiological stresses because of their delicate act on breaking and rejoining DNA. These stresses (e.g. exposure to topoisomerase poisons, acidic pH, and oxidative stresses) can convert DNA topoisomerases into DNA-breaking nucleases, resulting in cell death and/or genomic instability. The importance of topoisomerase-mediated DNA cleavage in tumor cell death and carcinogenesis has been recognized. This review focuses on recent findings concerning the molecular mechanisms of the stress responses to topoisomerase-mediated DNA damage. The involvement of ubiquitin/26S proteasome and SUMO/UBC9 in these processes, as well as the role of topoisomerase cleavable complexes in apoptotic cell death are discussed.
DNA拓扑异构酶是双刃剑。它们对于正常细胞生长过程中DNA的许多重要功能至关重要。然而,由于它们在断裂和重新连接DNA时的精细作用,在各种生理和非生理应激下它们也高度脆弱。这些应激(例如暴露于拓扑异构酶毒物、酸性pH值和氧化应激)可将DNA拓扑异构酶转化为DNA断裂核酸酶,导致细胞死亡和/或基因组不稳定。拓扑异构酶介导的DNA切割在肿瘤细胞死亡和致癌作用中的重要性已得到认可。本综述重点关注关于对拓扑异构酶介导的DNA损伤应激反应分子机制的最新发现。讨论了泛素/26S蛋白酶体和SUMO/UBC9在这些过程中的参与,以及拓扑异构酶可切割复合物在凋亡细胞死亡中的作用。