侯春英, 卢多. 氧气对基因组的结构与化学影响J. 药学学报, 2020,55(8): 1744-1753. doi: 10.16438/j.0513-4870.2020-0815
引用本文: 侯春英, 卢多. 氧气对基因组的结构与化学影响J. 药学学报, 2020,55(8): 1744-1753. doi: 10.16438/j.0513-4870.2020-0815
HOU Chun-ying, LU Duo. Oxygen impact on genome structure and chemistryJ. Acta Pharmaceutica Sinica, 2020,55(8): 1744-1753. doi: 10.16438/j.0513-4870.2020-0815
Citation: HOU Chun-ying, LU Duo. Oxygen impact on genome structure and chemistryJ. Acta Pharmaceutica Sinica, 2020,55(8): 1744-1753. doi: 10.16438/j.0513-4870.2020-0815

氧气对基因组的结构与化学影响

Oxygen impact on genome structure and chemistry

  • 摘要: 氧气是生命活动的必要元素,主要在线粒体参与能量代谢过程。对于包裹在细胞核里的基因组,氧气可以通过许多渠道对其结构和化学性质进行调控,其中活性氧是一类重要的信使分子,对基因组进行种类繁多的修饰,而铁离子提供了多方面的辅助作用。它们的共同作用影响到基因组复制、转录和损伤修复等几乎所有的生化功能。在此基础上,环境氧浓度的变化,特别是多种主要疾病和重要生理过程相关的低氧环境,可以引起基因组层面的响应。鉴于引起这一系列基因组上变化的因子有可能成为药物靶标,值得系统深入地研究。在此,作者汇总了活性氧、铁离子和细胞低氧对基因组的影响,并简单讨论相关的药物分子。

     

    Abstract: Oxygen is an essential element for life, which is mostly consumed at mitochondria for energy metabolism. For the genome inside nucleus, oxygen conducts structural regulations and chemical modifications through multiple pathways, where reactive oxygen species (ROS) serve as important messenger molecules. The highly activated ROS have the ability to produce different kinds of DNA lesions, while ferrous ions provide supports in many forms. Under the combinatorial action of oxygen and iron, almost all the genomic biochemical processes, such as replication, transcription and DNA damage repair are affected. Moreover, the variation of environmental oxygen concentration, particularly hypoxia that presents in many major diseases and critical physiological stages, provokes the responds at the genomic level. While the factors that lead to these genomic alterations are potential drug targets and deserve systematic investigations, herein, we collect the existing knowledge in the effects of ROS, ferrous ion and cell hypoxia on genome, along with brief discussions of the related drug molecules.

     

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