4.7 Article

ApoE4-associated phospholipid dysregulation contributes to development of Tau hyper-phosphorylation after traumatic brain injury

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SCIENTIFIC REPORTS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-017-11654-7

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  1. Alzheimer Association [NIRP14-304720]
  2. Department of Veteran Affairs RRD Service SPiRE [1I21RX001558-01A1]
  3. NIH [1R01AG048923-01, 1RF1AG054014]
  4. Department of Veterans Affairs Office of Research and Development Medical Research Service (RDIS) [0005]
  5. University of Washington Friends of Alzheimer's Research
  6. University of Washington Royalty Research Fund
  7. Northwest Network Mental Illness Research, Education and Clinical Center
  8. James J. Peters VA Medical Center
  9. VA [736490, 1I21RX001558-01A1] Funding Source: Federal RePORTER

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The apolipoprotein E4 (ApoE4) genotype combines with traumatic brain injury (TBI) to increase the risk of developing Alzheimer's Disease (AD). However, the underlying mechanism(s) is not well-understood. We found that after exposure to repetitive blast-induced TBI, phosphoinositol biphosphate (PIP2) levels in hippocampal regions of young ApoE3 mice were elevated and associated with reduction in expression of a PIP2 degrading enzyme, synaptojanin 1 (synj1). In contrast, hippocampal PIP2 levels in ApoE4 mice did not increase after blast TBI. Following blast TBI, phospho-Tau (pTau) levels were unchanged in ApoE3 mice, whereas in ApoE4 mice, levels of pTau were significantly increased. To determine the causal relationship between changes in pTau and PIP2/synj1 levels after TBI, we tested if down-regulation of synj1 prevented blast-induced Tau hyper-phosphorylation. Knockdown of synj1 decreased pTau levels in vitro, and abolished blast-induced elevation of pTau in vivo. Blast TBI increased glycogen synthase kinase (GSK)-3 beta activities in ApoE4 mice, and synj1 knockdown inhibited GSK3 beta phosphorylation of Tau. Together, these data suggest that ApoE proteins regulate brain phospholipid homeostasis in response to TBI and that the ApoE4 isoform is dysfunctional in this process. Downregulation of synj1 rescues blast-induced phospholipid dysregulation and prevents development of Tau hyper-phosphorylation in ApoE4 carriers.

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