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The role of mitochondrial DNA mutations and free radicals in disease and ageing

机译:线粒体DNA突变和自由基在疾病和衰老中的作用

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摘要

Considerable efforts have been made to understand the role of oxidative stress in age-related diseases and ageing. The mitochondrial free radical theory of ageing, which proposes that damage to mitochondrial DNA (mtDNA) and other macromolecules caused by the production of reactive oxygen species (ROS) during cellular respiration drives ageing, has for a long time been the central hypothesis in the field. However, in contrast with this theory, evidence from an increasing number of experimental studies has suggested that mtDNA mutations may be generated by replication errors rather than by accumulated oxidative damage. Furthermore, interventions to modulate ROS levels in humans and animal models have not produced consistent results in terms of delaying disease progression and extending lifespan. A number of recent experimental findings strongly question the mitochondrial free radical theory of ageing, leading to the emergence of new theories of how age-associated mitochondrial dysfunction may lead to ageing. These new hypotheses are mainly based on the underlying notion that, despite their deleterious role, ROS are essential signalling molecules that mediate stress responses in general and the stress response to age-dependent damage in particular. This novel view of ROS roles has a clear impact on the interpretation of studies in which antioxidants have been used to treat human age-related diseases commonly linked to oxidative stress.
机译:为了理解氧化应激在与年龄有关的疾病和衰老中的作用,已经做出了相当大的努力。线粒体自由基老化理论认为,细胞呼吸过程中由活性氧(ROS)的产生引起的线粒体DNA(mtDNA)和其他大分子的破坏驱动了衰老,长期以来一直是该领域的主要假设。但是,与该理论相反,越来越多的实验研究表明,mtDNA突变可能是由复制错误而不是由累积的氧化损伤引起的。此外,在延缓疾病进展和延长寿命方面,在人和动物模型中调节ROS水平的干预措施并未产生一致的结果。最近的许多实验发现强烈质疑线粒体自由基的衰老理论,导致出现了新的理论,即与年龄相关的线粒体功能障碍如何导致衰老。这些新的假设主要基于以下基本观念:尽管ROS具有有害作用,但它们还是介导一般应激反应,尤其是针对年龄依赖性损伤的应激反应的重要信号分子。 ROS作用的这种新颖观点对研究的解释具有明显的影响,在这些研究中,抗氧化剂已被用于治疗通常与氧化应激有关的人类年龄相关疾病。

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