NIH Biomedical Research Center, 251 Bayview Boulevard, Baltimore, MD 21224, USA.
Mech Ageing Dev. 2012 Apr;133(4):169-75. doi: 10.1016/j.mad.2011.11.003. Epub 2011 Nov 28.
Oxidative DNA damage has been attributed to increased cancer incidence and premature aging phenotypes. Reactive oxygen species (ROS) are unavoidable byproducts of oxidative phosphorylation and are the major contributors of endogenous oxidative damage. To prevent the negative effects of ROS, cells have developed DNA repair mechanisms designed to specifically combat endogenous DNA modifications. The base excision repair (BER) pathway is primarily responsible for the repair of small non-helix distorting lesions and DNA single strand breaks. This repair pathway is found in all organisms, and in mammalian cells, consists of three related sub-pathways: short patch (SP-BER), long patch (LP-BER) and single strand break repair (SSBR). While much is known about nuclear BER, comparatively little is known about this pathway in the mitochondria, particularly the LP-BER and SSBR sub-pathways. There are a number of proteins that have recently been found to be involved in mitochondrial BER, including Cockayne syndrome proteins A and B (CSA and CSB), aprataxin (APTX), tryosyl-DNA phosphodiesterase 1 (TDP1), flap endonuclease 1 (FEN-1) and exonuclease G (EXOG). These significant advances in mitochondrial DNA repair may open new avenues in the management and treatment of a number of neurological disorders associated with mitochondrial dysfunction, and will be reviewed in further detail herein.
氧化 DNA 损伤与癌症发病率增加和早衰表型有关。活性氧 (ROS) 是氧化磷酸化不可避免的副产物,是内源性氧化损伤的主要来源。为了防止 ROS 的负面影响,细胞已经开发了专门用于对抗内源性 DNA 修饰的 DNA 修复机制。碱基切除修复 (BER) 途径主要负责修复小的非螺旋扭曲损伤和 DNA 单链断裂。该修复途径存在于所有生物体中,在哺乳动物细胞中,由三个相关的子途径组成:短补丁 (SP-BER)、长补丁 (LP-BER) 和单链断裂修复 (SSBR)。尽管人们对核 BER 了解很多,但对线粒体中的该途径,特别是 LP-BER 和 SSBR 子途径了解甚少。最近发现了许多参与线粒体 BER 的蛋白质,包括 Cockayne 综合征蛋白 A 和 B (CSA 和 CSB)、 aprataxin (APTX)、tryosyl-DNA 磷酸二酯酶 1 (TDP1)、flap 内切酶 1 (FEN-1) 和外切酶 G (EXOG)。这些在线粒体 DNA 修复方面的重大进展可能为治疗与线粒体功能障碍相关的多种神经疾病开辟新途径,并将在本文中进行更详细的回顾。