4.7 Article

Molecular reorganization of endocannabinoid signalling in Alzheimer's disease

期刊

BRAIN
卷 134, 期 -, 页码 1041-1060

出版社

OXFORD UNIV PRESS
DOI: 10.1093/brain/awr046

关键词

glia; human; neurodegeneration; retrograde signalling; synapse

资金

  1. Scottish Universities Life Science Alliance (SULSA)
  2. European Molecular Biology Organization
  3. Swedish Medical Research Council
  4. Alzheimer's Research Trust UK
  5. Alzheimer's Association
  6. European Commission [HEALTH-F2-2007-201159]
  7. National Institutes of Health [DA023214, DA011322, DA021696]
  8. Fundacao para a Ciencia e a Tecnologia [PTDC/SAU-OSM/105663/2008, SFRH/BD/33467/2008]
  9. Spanish Ministry of Science and Innovation [SAF2005-02845]
  10. Madrid Council [S-BIO/0170/2006]
  11. MRC [G0600676] Funding Source: UKRI
  12. Medical Research Council [G0600676] Funding Source: researchfish
  13. Grants-in-Aid for Scientific Research [19100005] Funding Source: KAKEN
  14. Fundação para a Ciência e a Tecnologia [SFRH/BD/33467/2008, PTDC/SAU-OSM/105663/2008] Funding Source: FCT

向作者/读者索取更多资源

Retrograde messengers adjust the precise timing of neurotransmitter release from the presynapse, thus modulating synaptic efficacy and neuronal activity. 2-Arachidonoyl glycerol, an endocannabinoid, is one such messenger produced in the postsynapse that inhibits neurotransmitter release upon activating presynaptic CB(1) cannabinoid receptors. Cognitive decline in Alzheimer's disease is due to synaptic failure in hippocampal neuronal networks. We hypothesized that errant retrograde 2-arachidonoyl glycerol signalling impairs synaptic neurotransmission in Alzheimer's disease. Comparative protein profiling and quantitative morphometry showed that overall CB(1) cannabinoid receptor protein levels in the hippocampi of patients with Alzheimer's disease remain unchanged relative to age-matched controls, and CB(1) cannabinoid receptor-positive presynapses engulf amyloid-beta-containing senile plaques. Hippocampal protein concentrations for the sn-1-diacylglycerol lipase alpha and beta isoforms, synthesizing 2-arachidonoyl glycerol, significantly increased in definite Alzheimer's (Braak stage VI), with ectopic sn-1-diacylglycerol lipase beta expression found in microglia accumulating near senile plaques and apposing CB(1) cannabinoid receptor-positive presynapses. We found that microglia, expressing two 2-arachidonoyl glycerol-degrading enzymes, serine hydrolase alpha/beta-hydrolase domain-containing 6 and monoacylglycerol lipase, begin to surround senile plaques in probable Alzheimer's disease (Braak stage III). However, Alzheimer's pathology differentially impacts serine hydrolase alpha/beta-hydrolase domain-containing 6 and monoacylglycerol lipase in hippocampal neurons: serine hydrolase alpha/beta-hydrolase domain-containing 6 expression ceases in neurofibrillary tangle-bearing pyramidal cells. In contrast, pyramidal cells containing hyperphosphorylated tau retain monoacylglycerol lipase expression, although at levels significantly lower than in neurons lacking neurofibrillary pathology. Here, monoacylglycerol lipase accumulates in CB(1) cannabinoid receptor-positive presynapses. Subcellular fractionation revealed impaired monoacylglycerol lipase recruitment to biological membranes in post-mortem Alzheimer's tissues, suggesting that disease progression slows the termination of 2-arachidonoyl glycerol signalling. We have experimentally confirmed that altered 2-arachidonoyl glycerol signalling could contribute to synapse silencing in Alzheimer's disease by demonstrating significantly prolonged depolarization-induced suppression of inhibition when superfusing mouse hippocampi with amyloid-beta. We propose that the temporal dynamics and cellular specificity of molecular rearrangements impairing 2-arachidonoyl glycerol availability and actions may differ from those of anandamide. Thus, enhanced endocannabinoid signalling, particularly around senile plaques, can exacerbate synaptic failure in Alzheimer's disease.

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