Endogenous Repair System of Oxidative Damage of DNA

Anmol Sharma, Pawan Gupta, Pranav Kumar Prabhakar
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引用次数: 22

Abstract

DNA is one of the most important biomolecules of living cells which carries genetic information from generation to generation. Many endogenous and exogenous agents may disrupt the structure of DNA. Change in the cellular genome can lead to errors in replication, transcription and in protein synthesis. DNA damage occurs naturally or result from a metabolic and hydrolytic process which release some very active chemical entities like free radicals, Reactive Oxygen Species (ROS), Reactive Nitrogen Intermediate (RNI), Reactive Carbonyl Species (RCS), lipid peroxidation products and alkylating agents. Superoxide radical, hydroxyl radical and hydrogen peroxide cause a significant threat to cellular integrity by damaging the DNA, lipids, proteins and other biomolecules. Oxidative stress may be explained as a disturbance in the number of free radicals and our system’s ability to neutralize these free radicals. Imbalances in the normal redox potential can also lead to toxic effects via the generation of peroxides. Oxidation of DNA bases leads to the base damage, nick in the strand and break in the strand either single or double strand. Oxidative stress can also cause modifications in normal mechanisms of cell signaling. DNA mutation can result in a number of genetic abnormalities such as cancer, heart failure, Alzheimer’s disease, and depression. Human body has special protection in the form of antioxidant molecules and enzymes against these free radicals. Generation of ROS and its neutralization must be regulated to protect cells and signalling biomolecules from the deleterious effect of oxidative stress with the involvement of antioxidant systems, enzymes, and specific proteins. DNA repair system is a complex system which helps in the identification, removal of the wrong nucleotide and repairs them and as a result, the cell will produce correct and functional protein and active enzyme.
DNA氧化损伤的内源性修复系统
DNA是活细胞中最重要的生物分子之一,它携带着遗传信息代代相传。许多内源性和外源性药物都可能破坏DNA的结构。细胞基因组的改变会导致复制、转录和蛋白质合成的错误。DNA损伤是自然发生的,或者是代谢和水解过程的结果,这些过程释放出一些非常活跃的化学实体,如自由基、活性氧(ROS)、活性氮中间体(RNI)、活性羰基(RCS)、脂质过氧化产物和烷基化剂。超氧自由基、羟基自由基和过氧化氢通过破坏DNA、脂质、蛋白质和其他生物分子对细胞完整性造成重大威胁。氧化应激可以解释为自由基数量的紊乱和我们系统中和这些自由基的能力的紊乱。正常氧化还原电位的不平衡也可通过生成过氧化物导致毒性作用。DNA碱基的氧化导致碱基损伤,链上的缺口和单链或双链断裂。氧化应激也能引起细胞信号传导正常机制的改变。DNA突变会导致许多基因异常,如癌症、心力衰竭、阿尔茨海默病和抑郁症。人体以抗氧化分子和酶的形式对这些自由基具有特殊的保护作用。在抗氧化系统、酶和特定蛋白质的参与下,必须调节ROS的产生及其中和,以保护细胞和信号生物分子免受氧化应激的有害影响。DNA修复系统是一个复杂的系统,它有助于识别,去除错误的核苷酸并修复它们,从而使细胞产生正确的功能蛋白质和活性酶。
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来源期刊
Current Chemical Biology
Current Chemical Biology Medicine-Biochemistry (medical)
CiteScore
1.40
自引率
0.00%
发文量
16
期刊介绍: Current Chemical Biology aims to publish full-length and mini reviews on exciting new developments at the chemistry-biology interface, covering topics relating to Chemical Synthesis, Science at Chemistry-Biology Interface and Chemical Mechanisms of Biological Systems. Current Chemical Biology covers the following areas: Chemical Synthesis (Syntheses of biologically important macromolecules including proteins, polypeptides, oligonucleotides, oligosaccharides etc.; Asymmetric synthesis; Combinatorial synthesis; Diversity-oriented synthesis; Template-directed synthesis; Biomimetic synthesis; Solid phase biomolecular synthesis; Synthesis of small biomolecules: amino acids, peptides, lipids, carbohydrates and nucleosides; and Natural product synthesis).
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