Amyloid beta oligomers modulate neuronal autophagy through the primary cilium
Pampliega, O.; Soria, F. N.; Pineda-Ramirez, N.; Bezard, E.
Show abstract
The major neurodegenerative diseases, like Alzheimers disease (AD), accumulate neuropathogenic proteins that compromise autophagic function. In AD, autophagy contributes to intracellular APP processing and amyloid beta (A{beta}) generation by mutant presenilin-1 (PS1). However, how extracellular soluble A{beta} oligomers (A{beta}o) impact intracellular autophagy is not well understood. The primary cilium (PC), a signaling organelle on the surface of mature neurons and glia, is able to bind A{beta}. Since PC signaling pathways knowingly modify autophagy in non-brain cells, we here investigated the role of neuronal PC in the modulation of autophagy during acute extracellular A{beta}o overload. Our results show that, in vivo, recombinant A{beta}o require the presence of neuronal PC to modulate early autophagy and to induce the accumulation of autophagic vacuoles in an age-dependent manner. We show that activated Akt mediates these effects in an age-dependent manner, and that ciliary p75NTR receptor is required to block autophagy by A{beta}o. These findings demonstrate that neuronal PC in the adult brain participates in the deleterious effects mediated by soluble A{beta}o. The PC should therefore be considered as a target organelle to modulate autophagy for the treatment of neurodegenerative diseases. HighlightsO_LIA{beta}o requires the neuronal PC to impair learning in young and old mice. C_LIO_LIAutophagy in whole hippocampus differs from autophagy response in hippocampal neurons. C_LIO_LIA{beta}o induce autophagolysosome accumulation through primary cilia- and age-dependent Akt phosphorylation. C_LI
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