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阿尔茨海默病三联转基因小鼠海马细胞器蛋白质组学分析揭示的线粒体分子异常

Mitochondrial Molecular Abnormalities Revealed by Proteomic Analysis of Hippocampal Organelles of Mice Triple Transgenic for Alzheimer Disease.

作者信息

Yu Haitao, Lin Xuemei, Wang Dian, Zhang Zaijun, Guo Yi, Ren Xiaohu, Xu Benhong, Yuan Jianhui, Liu Jianjun, Spencer Peter S, Wang Jian-Zhi, Yang Xifei

机构信息

Key Laboratory of Modern Toxicology of Shenzhen, Institute of Toxicology, Shenzhen Center for Disease Control and Prevention, Shenzhen, China.

Institute of New Drug Research and Guangzhou, Key Laboratory of Innovative Chemical Drug Research in Cardio-Cerebrovascular Diseases, Jinan University College of Pharmacy, Guangzhou, China.

出版信息

Front Mol Neurosci. 2018 Mar 9;11:74. doi: 10.3389/fnmol.2018.00074. eCollection 2018.

Abstract

Mitochondrial dysfunction is implicated in the pathogenesis of Alzheimer's disease (AD). However, the precise mitochondrial molecular deficits in AD remain poorly understood. Mitochondrial and nuclear proteomic analysis in mature male triple transgenic AD mice (PS1M146V/APPSwe/TauP301L) by two-dimensional fluorescence difference gel electrophoresis (2D-DIGE) coupled with MALDI-TOF-MS/MS, bio-informatics analysis and immunofluorescent staining were performed in this study. In addition to impaired spatial memory impairment and intracellular accumulation of amyloid 1-42 (Aβ) in the 3xTg-AD mice, a well-accepted mouse model of the human disease, we also found significantly increased DNA oxidative damage in entorhinal cortex, hippocampal CA1, CA3 and dental gyrus (DG), as evidenced by the positive staining of 8-hydroxyguanosine, a biomarker of mild cognitive impairment early in AD. We identified significant differences in 27 hippocampal mitochondrial proteins (11 increased and 16 decreased), and 37 hippocampal nuclear proteins (12 increased and 25 decreased) in 3xTg-AD mice compared with the wild-type (WT) mice. Differentially expressed mitochondrial and nuclear proteins were mainly involved in energy metabolism (>55%), synapses, DNA damage, apoptosis and oxidative stress. Two proteins were differentially expressed in both hippocampal mitochondria and nuclei, namely electron transport chain (ETC)-related protein ATP synthase subunit d (ATP5H) was significantly decreased, and apoptosis-related dynamin-1 (DYN1), a pre-synaptic and mitochondrial division-regulated protein that was significantly increased. In sum, perturbations of hippocampus mitochondrial energy metabolism-related proteins responsible for ATP generation via oxidation phosphorylation (OXPHOS), especially nuclear-encoded OXPHOS proteins, correlated with the amyloid-associated cognitive deficits of this murine AD model. The molecular changes in respiratory chain-related proteins and DYN1 may represent novel biomarkers of AD.

摘要

线粒体功能障碍与阿尔茨海默病(AD)的发病机制有关。然而,AD中线粒体的确切分子缺陷仍知之甚少。本研究通过二维荧光差异凝胶电泳(2D-DIGE)结合基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF-MS/MS)、生物信息学分析和免疫荧光染色,对成熟雄性三重转基因AD小鼠(PS1M146V/APPSwe/TauP301L)进行了线粒体和细胞核蛋白质组学分析。在3xTg-AD小鼠(一种公认的人类疾病小鼠模型)中,除了空间记忆受损和细胞内淀粉样蛋白1-42(Aβ)积累外,我们还发现内嗅皮质、海马CA1、CA3和齿状回(DG)中的DNA氧化损伤显著增加,8-羟基鸟苷(AD早期轻度认知障碍的生物标志物)的阳性染色证明了这一点。与野生型(WT)小鼠相比,我们在3xTg-AD小鼠中鉴定出27种海马线粒体蛋白(11种增加,16种减少)和37种海马细胞核蛋白(12种增加,25种减少)存在显著差异。差异表达的线粒体和细胞核蛋白主要参与能量代谢(>55%)、突触、DNA损伤、凋亡和氧化应激。两种蛋白在海马线粒体和细胞核中均有差异表达,即电子传递链(ETC)相关蛋白ATP合酶亚基d(ATP5H)显著降低,而凋亡相关的发动蛋白-1(DYN1)(一种突触前和线粒体分裂调节蛋白)显著增加。总之,负责通过氧化磷酸化(OXPHOS)产生ATP的海马线粒体能量代谢相关蛋白的扰动,尤其是核编码的OXPHOS蛋白,与这种小鼠AD模型的淀粉样蛋白相关认知缺陷相关。呼吸链相关蛋白和DYN1的分子变化可能代表AD的新型生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3412/5854685/3d67f37b4071/fnmol-11-00074-g0001.jpg

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