ACS Chemical Neuroscience · 2018 · 114 citations · 53 references
Advanced glycation end products (AGEs) are implicated in the pathology of Alzheimer's disease (AD), as they induce neurodegeneration following interaction with the receptor for AGE (RAGE). This study aimed to establish a mechanistic link between AGE-RAGE signaling and AD pathology. AGE-induced changes in the neuro2a proteome were monitored by SWATH-MS. Western blotting and cell-based reporter assays were used to investigate AGE-RAGE regulated APP processing and tau phosphorylation in primary cortical neurons. Selected protein expression was validated in brain samples affected by AD. The AGE-RAGE axis altered proteome included increased expression of cathepsin B and asparagine endopeptidase (AEP), which mediated an increase in Aβ<sub>1-42</sub> formation and tau phosphorylation, respectively. Elevated cathepsin B, AEP, RAGE, and pTau levels were found in human AD brain, coincident with enhanced AGEs. This study demonstrates that the AGE-RAGE axis regulates Aβ<sub>1-42</sub> formation and tau phosphorylation via increased cathepsin B and AEP, providing a new molecular link between AGEs and AD pathology.
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DAVID: Database for Annotation, Visualization, and Integrated Discovery
Glynn Dennis, Brad T. Sherman, Douglas A Hosack et al. · Genome biology · 2003 · 9.4K citations · Full text
I. Vermes, C. Haanen, H M Steffens-Nakken et al. · Journal of Immunological Methods · 1995 · 5.3K citations · Full text
Inge Grundke‐Iqbal, Khurshid Iqbal, Y C Tung et al. · Proceedings of the National Academy of Sciences · 1986 · 3.6K citations · Full text
Molecular Biology, Cytoskeleton, Microtubule-associated Protein Tau +19
DAVID: Database for Annotation, Visualization, and Integrated Discovery
Glynn Dennis, Brad T. Sherman, Douglas A Hosack et al. · Genome biology · 2003 · 2.3K citations · Full text
Engineering, Genetics, Genomics +17