4.5 Article

Aβ PROMOTES VDAC1 CHANNEL DEPHOSPHORYLATION IN NEURONAL LIPID RAFTS. RELEVANCE TO THE MECHANISMS OF NEUROTOXICITY IN ALZHEIMER'S DISEASE

期刊

NEUROSCIENCE
卷 278, 期 -, 页码 354-366

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuroscience.2014.07.079

关键词

voltage-dependent anion channel; amyloid precursor protein; amyloid beta; Alzheimer's disease; lipid rafts; tyrosine phosphatase inhibitor

资金

  1. Spanish Ministry of Science and Innovation [SAF2010-22114-C02-01/02]
  2. Tricontinental Atlantic Campus (CEI-Canarias)
  3. Seventh Framework Programme of the European Commission [278486: DEVELAGE]

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Voltage-dependent anion channel (VDAC) is a mitochondrial protein abundantly found in neuronal lipid rafts. In these membrane domains, VDAC is associated with a complex of signaling proteins that trigger neuroprotective responses. Loss of lipid raft integrity may result in disruption of multicomplex association and alteration of signaling responses that may ultimately promote VDAC activation. Some data have demonstrated that VDAC at the neuronal membrane may be involved in the mechanisms of amyloid beta (A beta)-induced neurotoxicity, through yet unknown mechanisms. A beta is generated from amyloid precursor protein (APP), and is released to the extracellular space where it may undergo self-aggregation. A beta aggregate deposition in the form of senile plaques may lead to Alzheimer's disease (AD) neuropathology, although other pathological hallmarks (such as hyper-phosphorylated Tau deposition) also participate in this neurodegenerative process. The present study demonstrates that VDAC1 associates with APP and Ab in lipid rafts of neurons. Interaction of VDAC1 with APP was observed in lipid rafts from the frontal and entorhinal cortex of human brains affected by AD at early stages (I-IV/0-B of Braak and Braak). Furthermore, Ab exposure enhanced the dephosphorylation of VDAC1 that correlated with cell death. Both effects were reverted in the presence of tyrosine phosphatase inhibitors. VDAC1 dephosphorylation was corroborated in lipid rafts of AD brains. These results demonstrate that A beta is involved in alterations of the phosphorylation state of VDAC in neuronal lipid rafts. Modulation of this channel maycontribute to the development and progression of AD pathology. (C) 2014 IBRO. Published by Elsevier Ltd. All rights reserved.

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