Role of nucleotide excision repair proteins in oxidative DNA damage repair: an updating

被引:44
作者
Pascucci, B. [1 ,2 ]
D'Errico, M. [1 ]
Parlanti, E. [1 ]
Giovannini, S. [1 ]
Dogliotti, E. [1 ]
机构
[1] Ist Super Sanita, Dept Environm & Primary Prevent, I-00161 Rome, Italy
[2] CNR, Ist Cristallog, I-00016 Rome, Italy
关键词
oxidative damage; DNA repair; oxidative metabolism; xeroderma pigmentosum; Cockayne syndrome; PIGMENTOSUM GROUP-A; GROUP-B PROTEIN; UV-SENSITIVE SYNDROME; GROUP-C PROTEIN; TRANSCRIPTION-COUPLED REPAIR; HOST-CELL REACTIVATION; GLOBAL GENOME REPAIR; COCKAYNE-SYNDROME; XERODERMA-PIGMENTOSUM; GENE-PRODUCT;
D O I
10.1134/S0006297911010032
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
DNA repair is a crucial factor in maintaining a low steady-state level of oxidative DNA damage. Base excision repair (BER) has an important role in preventing the deleterious effects of oxidative DNA damage, but recent evidence points to the involvement of several repair pathways in this process. Oxidative damage may arise from endogenous and exogenous sources and may target nuclear and mitochondrial DNA as well as RNA and proteins. The importance of preventing mutations associated with oxidative damage is shown by a direct association between defects in BER (i.e. MYH DNA glycosylase) and colorectal cancer, but it is becoming increasingly evident that damage by highly reactive oxygen species plays also central roles in aging and neurodegeneration. Mutations in genes of the nucleotide excision repair (NER) pathway are associated with diseases, such as xeroderma pigmentosum and Cockayne syndrome, that involve increased skin cancer risk and/or developmental and neurological symptoms. In this review we will provide an updating of the current evidence on the involvement of NER factors in the control of oxidative DNA damage and will attempt to address the issue of whether this unexpected role may unlock the difficult puzzle of the pathogenesis of these syndromes.
引用
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页码:4 / 15
页数:12
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