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EphA4 Activation of c-Abl Mediates Synaptic Loss and LTP Blockade Caused by Amyloid-β Oligomers.

PLoS One.. 2014-03;  9(3)
Vargas LM, Leal N, Estrada LD, GonzÁlez A, Serrano F, Araya K, Gysling K, Inestrosa NC, Pasquale EB, Alvarez AR. Departamento de BiologÍa Celular y Molecular, Laboratorio de SeñalizaciÓn Celular, Facultad de Ciencias BiolÓgicas, P. Universidad CatÓlica de Chile, Santiago, Chile.
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Abstract

The early stages of Alzheimer's disease are characterised by impaired synaptic plasticity and synapse loss. Here, we show that amyloid-β oligomers (AβOs) activate the c-Abl kinase in dendritic spines of cultured hippocampal neurons and that c-Abl kinase activity is required for AβOs-induced synaptic loss. We also show that the EphA4 receptor tyrosine kinase is upstream of c-Abl activation by AβOs. EphA4 tyrosine phosphorylation (activation) is increased in cultured neurons and synaptoneurosomes exposed to AβOs, and in Alzheimer-transgenic mice brain. We do not detect c-Abl activation in EphA4-knockout neurons exposed to AβOs. More interestingly, we demonstrate EphA4/c-Abl acti... More

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