4.7 Article

Impairments in fast axonal transport and motor neuron deficits in transgenic mice expressing familial Alzheimer's disease-linked mutant presenilin 1

Journal

JOURNAL OF NEUROSCIENCE
Volume 27, Issue 26, Pages 7011-7020

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.4272-06.2007

Keywords

Alzheimer's disease; presenilin; kinesin; protein trafficking; axonal transport; motor neurons; tau; neurofilament; kinase; GSK-3

Categories

Funding

  1. NIA NIH HHS [AG021494, R01 AG033570, R01 AG021494] Funding Source: Medline
  2. NINDS NIH HHS [NS23868, R01 NS041170, NS43408, R01 NS023320, NS41170, R56 NS023868, R01 NS043408, R01 NS023868, NS23320, R01 NS023868-20] Funding Source: Medline

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Presenilins (PS) play a central role in gamma-secretase-mediated processing of beta- amyloid precursor protein (APP) and numerous type I transmembrane proteins. Expression of mutant PS1 variants causes familial forms of Alzheimer's disease (FAD). In cultured mammalian cells that express FAD- linked PS1 variants, the intracellular trafficking of several type 1 membrane proteins is altered. We now report that the anterograde fast axonal transport (FAT) of APP and Trk receptors is impaired in the sciatic nerves of transgenic mice expressing two independent FAD-linked PS1 variants. Furthermore, FAD-linked PS1 mice exhibit a significant increase in phosphorylation of the cytoskeletal proteins tau and neurofilaments in the spinal cord. Reductions in FAT and phosphorylation abnormalities correlated with motor neuron functional deficits. Together, our data suggests that defects in anterograde FAT may underlie FAD-linked PS1-mediated neurodegeneration through a mechanism involving impairments in neurotrophin signaling and synaptic dysfunction.

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