Amyloid-β Increases Tau by Mediating Sirtuin 3 in Alzheimer’s Disease

被引:0
|
作者
Junxiang Yin
Pengcheng Han
Melissa Song
Megan Nielsen
Thomas G. Beach
Geidy E. Serrano
Winnie S. Liang
Richard J. Caselli
Jiong Shi
机构
[1] St. Joseph Hospital and Medical Center,Barrow Neurological Institute
[2] University of Pennsylvania,School of Arts and Sciences
[3] Banner Sun Health Research Institute,Civin Laboratory for Neuropathology
[4] Translational Genomics Research Institute (TGen),Tianjin Neurological Institute
[5] Department of Neurology,Department of Neurology
[6] Mayo Clinic Arizona,undefined
[7] Tianjin Medical University General Hospital,undefined
[8] Beijing Tiantan Hospital,undefined
[9] Capital Medical University,undefined
来源
Molecular Neurobiology | 2018年 / 55卷
关键词
Alzheimer’s disease; Mild cognitive impairment; Sirtuin; Acetylation; Tau; Amyloid;
D O I
暂无
中图分类号
学科分类号
摘要
Increasing evidence indicates that sirtuin 3 (Sirt3) has neuroprotective effects in regulating oxidative stress and energy metabolism, both of which are involved in the pathogenesis of Alzheimer’s disease (AD). However, it is unclear whether Sirt3 is associated with cognitive performance and pathological changes in AD. We conducted a case-control study of the postmortem brains of AD (n = 16), mild cognitive impairment (n = 13), and age- and education-matched cognitively normal (CN, n = 11) subjects. We measured the mRNA and protein levels of Sirt3 and assessed their association with cognitive performance and AD pathology. In an ex vivo model of cortical neurons from transgenic mice that carry human tau protein, we modified Sirt3 expression by genetic knockdown and knock-in to investigate the cause-effect relationship between Sirt3 and tau. Sirt3 levels were reduced in the entorhinal cortex, the middle temporal gyrus, and the superior frontal gyrus of AD subjects compared to those of CN. This reduction was associated with poorer test scores of neuropsychological evaluation and the severity of tau pathology. Further study with genetic manipulation of Sirt3 revealed that amyloid-β increased levels of total tau acetylated tau through its modulation of Sirt3. These data suggest that reduction of Sirt3 is critically involved in pathogenesis of AD.
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页码:8592 / 8601
页数:9
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