Authors
Jeffrey N Savas, Yi-Zhi Wang, Laura A DeNardo, Salvador Martinez-Bartolome, Daniel B McClatchy, Timothy J Hark, Natalie F Shanks, Kira A Cozzolino, Mathieu Lavallée-Adam, Samuel N Smukowski, Sung Kyu Park, Jeffery W Kelly, Edward H Koo, Terunaga Nakagawa, Eliezer Masliah, Anirvan Ghosh, John R Yates
Publication date
2017/11/28
Journal
Cell reports
Volume
21
Issue
9
Pages
2614-2627
Publisher
Elsevier
Description
Amyloid beta (Aβ) peptides impair multiple cellular pathways and play a causative role in Alzheimer's disease (AD) pathology, but how the brain proteome is remodeled by this process is unknown. To identify protein networks associated with AD-like pathology, we performed global quantitative proteomic analysis in three mouse models at young and old ages. Our analysis revealed a robust increase in Apolipoprotein E (ApoE) levels in nearly all brain regions with increased Aβ levels. Taken together with prior findings on ApoE driving Aβ accumulation, this analysis points to a pathological dysregulation of the ApoE-Aβ axis. We also found dysregulation of protein networks involved in excitatory synaptic transmission. Analysis of the AMPA receptor (AMPAR) complex revealed specific loss of TARPγ-2, a key AMPAR-trafficking protein. Expression of TARPγ-2 in hAPP transgenic mice restored AMPA currents. This …
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