Discrepancy of synaptic and microtubular protein phosphorylation in the hippocampus of APP/PS1 and MAPT×P301S transgenic mice at the early stage of Alzheimer’s disease

被引:0
|
作者
Qiyao Wang
Chenglong Xia
An Zhu
Yongjie Bao
Jiani Lu
Yuan Chen
Jiayi Xu
Binbin Wang
C. Benjamin Naman
Liping Li
Qinwen Wang
Hao Liu
Hongze Liang
Wei Cui
机构
[1] Ningbo University,Translational Medicine Center of Pain, Emotion and Cognition, Zhejiang Provincial Key Laboratory of Pathophysiology, School of Medicine
[2] Ningbo University,Key Laboratory of Advanced Mass Spectrometry and Molecular Analysis of Zhejiang Province, School of Materials Science and Chemical Engineering
[3] Ningbo University,Li Dak Sum Yip Yio Chin Kenneth Li Marine Biopharmaceutical Research Center
[4] Ningbo University,The Affiliated Hospital of Medical School
[5] Ningbo University,Ningbo Kangning Hospital
来源
Metabolic Brain Disease | 2023年 / 38卷
关键词
Protein phosphorylation; Alzheimer’s disease; Aβ; MAPT; Quantitative phosphoproteomics analysis;
D O I
暂无
中图分类号
学科分类号
摘要
Alzheimer’s disease (AD) is the most common neurodegenerative disorder, and is caused by multiple pathological factors, such as the overproduction of β-amyloid (Aβ) and the hyperphosphorylation of tau. However, there is limited knowledge of the mechanisms underlying AD pathogenesis and no effective biomarker for the early diagnosis of this disorder. Thus in this study, a quantitative phosphoproteomics analysis was performed to evaluate global protein phosphorylation in the hippocampus of Aβ overexpressing APP/PS1 transgenic mice and tau overexpressing MAPT×P301S transgenic mice, two in vivo AD model systems. These animals, up to ten weeks old, do not exhibit cognitive dysfunctions and are widely used to simulate early-stage AD patients. The number of differentially phosphorylated proteins (DPPs) was greater for APP/PS1 transgenic mice than for MAPT×P301S transgenic mice. The function of the DPPs in APP/PS1 transgenic mice was mainly related to synapses, while the function of the DPPs in MAPT×P301S transgenic mice was mainly related to microtubules. In addition, an AD core network was established including seven phosphoproteins differentially expressed in both animal models, and the function of this core network was related to synapses and oxidative stress. The results of this study suggest that Aβ and tau induce different protein phosphorylation profiles in the early stage of AD, leading to the dysfunctions in synapses and microtubule, respectively. And the detection of same DPPs in these animal models might be used for early AD diagnosis.
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页码:1983 / 1997
页数:14
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