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Redox environment, free radical, and oxidative DNA damage

机译:氧化还原环境,自由基和氧化性DNA损伤

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摘要

Significance: 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). Recent Advances: 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. Critical Issues: 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. Future Directions: 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.
机译:启示:有效的氧化还原稳态是至关重要的,破坏这一过程可能会产生重要的细胞后果。一系列系统可以保护细胞免受潜在的活性氧(ROS)的破坏,但是,如果这些系统不堪重负,例如在功能异常的细胞中,ROS可能会产生许多有害后果,包括DNA损伤。可以通过许多DNA修复途径来修复氧化性DNA损伤,例如碱基切除修复(BER)。最新进展:ROS在氧化性DNA损伤中的作用已广为人知,但是,ROS和氧化还原环境在调节靶向氧化性DNA损伤的DNA修复途径的效率方面正在出现新的作用。关键问题:氧化性DNA损伤以及氧化还原环境对DNA损伤的调节和修复与多种疾病有关。了解氧化还原环境如何在DNA损伤和修复中发挥如此关键的作用,将使我们进一步了解ROS的深远细胞后果。未来方向:在本综述中,我们讨论了ROS的有害作用,氧化性DNA损伤修复以及为控制氧化还原稳态而存在的氧化还原系统。我们还描述了氧化还原环境如何调节DNA途径,以及氧化还原环境和氧化性DNA损伤如何在疾病中起作用。

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