Redox proteomics analysis to decipher the neurobiology of Alzheimer-like neurodegeneration: overlaps in Down's syndrome and Alzheimer's disease brain

被引:94
作者
Butterfield, D. Allan [1 ,2 ,3 ]
Di Domenico, Fabio [4 ]
Swomley, Aaron M. [1 ]
Head, Elizabeth [3 ,5 ]
Perluigi, Marzia [4 ]
机构
[1] Univ Kentucky, Dept Chem, Lexington, KY 40506 USA
[2] Univ Kentucky, Ctr Membrane Sci, Lexington, KY 40506 USA
[3] Univ Kentucky, Sanders Brown Ctr Aging, Lexington, KY 40506 USA
[4] Univ Roma La Sapienza, Dept Biochem Sci, I-00185 Rome, Italy
[5] Univ Kentucky, Dept Mol Pharmacol & Nutr, Lexington, KY 40536 USA
基金
美国国家卫生研究院;
关键词
Alzheimer's disease; Down's syndrome; energy metabolism; protein oxidation; proteostasis network; redox proteomics; trisomy; 21; MILD COGNITIVE IMPAIRMENT; (1-42)-INDUCED OXIDATIVE STRESS; LIPID-PEROXIDATION; PROTEIN OXIDATION; MITOCHONDRIAL DYSFUNCTION; GLUCOSE-METABOLISM; INSULIN-RESISTANCE; PRECURSOR PROTEIN; NITRIC-OXIDE; BETA;
D O I
10.1042/BJ20140772
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
Accumulation of oxidative damage is a common feature of neurodegeneration that, together with mitochondrial dysfunction, point to the fact that reactive oxygen species are major contributors to loss of neuronal homoeostasis and cell death. Among several targets of oxidative stress, free-radical-mediated damage to proteins is particularly important in aging and age-related neurodegenerative diseases. In the majority of cases, oxidative-stress-mediated post-translational modifications cause non-reversible modifications of protein structure that consistently lead to impaired function. Redox proteomics methods are powerful tools to unravel the complexity of neurodegeneration, by identifying brain proteins with oxidative post-translational modifications that are detrimental for protein function. The present review discusses the current literature showing evidence of impaired pathways linked to oxidative stress possibly involved in the neurodegenerative process leading to the development of Alzheimer-like dementia. In particular, we focus attention on dysregulated pathways that underlie neurodegeneration in both aging adults with DS (Down's syndrome) and AD (Alzheimer's disease). Since AD pathology is age-dependent in DS and shows similarities with AD, identification of common oxidized proteins by redox proteomics in both DS and AD can improve our understanding of the overlapping mechanisms that lead from normal aging to development of AD. The most relevant proteomics findings highlight that disturbance of protein homoeostasis and energy production are central mechanisms of neurodegeneration and overlap in aging DS and AD. Protein oxidation affects crucial intracellular functions and may be considered a 'leitmotif' of degenerating neurons. Therapeutic strategies aimed at preventing/reducing multiple components of processes leading to accumulation of oxidative damage will be critical in future studies.
引用
收藏
页码:177 / 189
页数:13
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