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BDNF inhibits neurodegenerative disease–associated asparaginyl endopeptidase activity via phosphorylation by AKT
Zhi-Hao Wang, Wanqiang Wu, Seong Su Kang, Xia Liu, Zhiping Wu, Junmin Peng, Shan Ping Yu, Fredric P. Manfredsson, Ivette M. Sandoval, Xuebo Liu, Jian-Zhi Wang, Keqiang Ye
Zhi-Hao Wang, Wanqiang Wu, Seong Su Kang, Xia Liu, Zhiping Wu, Junmin Peng, Shan Ping Yu, Fredric P. Manfredsson, Ivette M. Sandoval, Xuebo Liu, Jian-Zhi Wang, Keqiang Ye
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Research Article Cell biology Neuroscience

BDNF inhibits neurodegenerative disease–associated asparaginyl endopeptidase activity via phosphorylation by AKT

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Abstract

AEP is an age-dependent lysosomal asparaginyl endopeptidase that cleaves numerous substrates including tau and α-synuclein and mediates their pathological roles in neurodegenerative diseases. However, the molecular mechanism regulating this critical protease remains incompletely understood. Here, we show that Akt phosphorylates AEP on residue T322 upon brain-derived neurotrophic factor (BDNF) treatment and triggers its lysosomal translocation and inactivation. When BDNF levels are reduced in neurodegenerative diseases, AEP T322 phosphorylation is attenuated. Consequently, AEP is activated and translocates into the cytoplasm, where it cleaves both tau and α-synuclein. Remarkably, the unphosphorylated T322A mutant increases tau or α-synuclein cleavage by AEP and augments cell death, whereas phosphorylation mimetic T322E mutant represses these effects. Interestingly, viral injection of T322E into Tau P301S mice antagonizes tau N368 cleavage and tau pathologies, rescuing synaptic dysfunction and cognitive deficits. By contrast, viral administration of T322A into young α-SNCA mice elicits α-synuclein N103 cleavage and promotes dopaminergic neuronal loss, facilitating motor defects. Therefore, our findings support the notion that BDNF contributes to the pathogenesis of neurodegenerative diseases by suppressing AEP via Akt phosphorylation.

Authors

Zhi-Hao Wang, Wanqiang Wu, Seong Su Kang, Xia Liu, Zhiping Wu, Junmin Peng, Shan Ping Yu, Fredric P. Manfredsson, Ivette M. Sandoval, Xuebo Liu, Jian-Zhi Wang, Keqiang Ye

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Figure 2

BDNF triggers Akt-phosphorylated AEP lysosomal translocation.

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BDNF triggers Akt-phosphorylated AEP lysosomal translocation.
(A and B) ...
(A and B) Colocalization between AEP pT322/Akt (A) and Akt pS473/AEP (B) in rat primary cortical neurons (DIV 13) treated with or without 100 ng/ml BDNF for 30 minutes. (C and D) Colocalization between AEP pT322/Akt (C) and Akt pS473/AEP (D) in rat primary cortical neurons (DIV 13) treated with 2 or 20 μM preaggregated Aβ for 16 hours. p-AEP T322 was biotinylated. Scale bars: 5 μm. (E–H) Quantification of colocalization in A–D. Data shown as the mean ± SEM (n = 10 cells per group). *P < 0.05; **P < 0.01 by 2-tailed t test for E and F, 1-way ANOVA with Tukey’s multiple-comparisons test for G and H. (I) p-T322 mediates AEP lysosomal translocation. Cells were treated with 100 ng/ml BDNF for 30 minutes, and then were subjected to subcellular fractionation. LAMP1 was used as specific marker for the lysosomal fraction. Tubulin was used as a loading control for the cytoplasmic fraction. (J) Akt phosphorylation translocates cytoplasmic AEP into the lysosomes. BR6 cells were treated with control or Akt inhibitor (10 μM), followed by BDNF (100 ng/ml) treatment at different time points. Western blot data in I and J are representative of 3 independent experiments.

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