DNA损伤
DNA修复
活性氧
氧化磷酸化
细胞生物学
DNA
化学
氧化应激
氧化还原
生物
DNA氧化
基底切除修复术
激进的
氧化损伤
过氧化氢
超氧化物
抗氧化剂
谷胱甘肽
超氧化物歧化酶
生物化学
有机化学
作者
Sarah J. Storr,Caroline M. Woolston,Yimin D. Zhang,Stewart G. Martin
标识
DOI:10.1089/ars.2012.4920
摘要
Effective redox homeostasis is critical, and disruption of this process can have important cellular consequences. An array of systems protect the cell from potentially damaging reactive oxygen species (ROS), however if these systems are overwhelmed, for example, in aberrantly functioning cells, ROS can have a number of detrimental consequences, including DNA damage. Oxidative DNA damage can be repaired by a number of DNA repair pathways, such as base excision repair (BER).The role of ROS in oxidative DNA damage is well established, however, there is an emerging role for ROS and the redox environment in modulating the efficiency of DNA repair pathways targeting oxidative DNA lesions.Oxidative DNA damage and modulation of DNA damage and repair by the redox environment are implicated in a number of diseases. Understanding how the redox environment plays such a critical role in DNA damage and repair will allow us to further understand the far reaching cellular consequence of ROS.In this review, we discuss the detrimental effects of ROS, oxidative DNA damage repair, and the redox systems that exist to control redox homeostasis. We also describe how DNA pathways can be modulated by the redox environment and how the redox environment and oxidative DNA damage plays a role in disease.
科研通智能强力驱动
Strongly Powered by AbleSci AI