Reduced Levels of Mitochondrial Complex I Subunit NDUFB8 and Linked Complex I plus III Oxidoreductase Activity in the TgCRND8 Mouse Model of Alzheimer's Disease

被引:22
|
作者
Francis, Beverly M. [1 ,2 ]
Yang, Jimao [1 ]
Song, Byung Jun [3 ]
Gupta, Saurabh [4 ,5 ]
Maj, Mary [4 ,5 ]
Bazinet, Richard P. [3 ]
Robinson, Brian [4 ,5 ]
Mount, Howard T. J. [1 ,2 ,6 ]
机构
[1] Tanz Ctr Res Neurodegenerat Dis, Toronto, ON, Canada
[2] Univ Toronto, Dept Physiol, Toronto, ON, Canada
[3] Univ Toronto, Dept Nutr Sci, Toronto, ON, Canada
[4] Univ Toronto, Hosp Sick Children, Dept Biochem, Toronto, ON M5G 1X8, Canada
[5] Univ Toronto, Hosp Sick Children, Dept Paediat, Toronto, ON M5G 1X8, Canada
[6] Univ Toronto, Dept Med, Div Neurol, Toronto, ON, Canada
基金
加拿大健康研究院;
关键词
Alzheimer's disease; amyloid; ATP; cardiolipin; creatine; electron transport chain; NDUFB8; OXIDATIVE STRESS; TRANSGENIC MICE; AMYLOID PLAQUE; BRAIN; EXPRESSION; ENERGY; GENES; DYSFUNCTION; CREATINE; NEURODEGENERATION;
D O I
10.3233/JAD-131499
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Bioenergetic failure is a feature of Alzheimer's disease (AD). We examined mitochondrial function in the amyloid-beta protein precursor transgenic 'TgCRND8' mouse model of AD. Activities of NADH: cytochrome c reductase (complex I + III) and cytochrome oxidase (complex IV) of the electron transport chain, as well as those of alpha-ketoglutarate dehydrogenase (alpha-KGDH) and pyruvate dehydrogenase (PDH) were assessed in brains of 45 week-old mice. Complex I + III activity was reduced by almost 50%, whereas complex IV, alpha-KGDH, and PDH activities were unaffected. Reduced activity coincided with decreased expression of NDUFB8, a nuclear-DNA encoded subunit integral to the assembly of complex I. The composition and availability of cardiolipin, a major phospholipid in inner mitochondrial membranes, was not altered. To determine whether mitochondrial output is affected by the selective reduction in complex I + III activity, we examined tissue levels of high-energy phosphates. ATP was maintained whereas creatine increased in the cortex and hippocampus. These results suggest disruption of complex I function and the likely role of creatine in sustaining ATP at late stages of dysfunction in TgCRND8 mice.
引用
收藏
页码:347 / 355
页数:9
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