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Deficient brain insulin signalling pathway in Alzheimer's disease and diabetes

The Journal of Pathology · 2011 · Vol. 225(1) · pp. 54–62
Ying LiuFei LiuInge Grundke‐IqbalKhalid IqbalCheng‐Xin Gong

Abstract

Brain glucose metabolism is impaired in Alzheimer's disease (AD), the most common form of dementia. Type 2 diabetes mellitus (T2DM) is reported to increase the risk for dementia, including AD, but the underlying mechanism is not understood. Here, we investigated the brain insulin-PI3K-AKT signalling pathway in the autopsied frontal cortices from nine AD, 10 T2DM, eight T2DM-AD and seven control cases. We found decreases in the levels and activities of several components of the insulin-PI3K-AKT signalling pathway in AD and T2DM cases. The deficiency of insulin-PI3K-AKT signalling was more severe in individuals with both T2DM and AD (T2DM-AD). This decrease in insulin-PI3K-AKT signalling could lead to activation of glycogen synthase kinase-3β, the major tau kinase. The levels and the activation of the insulin-PI3K-AKT signalling components correlated negatively with the level of tau phosphorylation and positively with protein O-GlcNAcylation, suggesting that impaired insulin-PI3K-AKT signalling might contribute to neurodegeneration in AD through down-regulation of O-GlcNAcylation and the consequent promotion of abnormal tau hyperphosphorylation and neurodegeneration. The decrease in brain insulin-PI3K-AKT signalling also correlated with the activation of calpain I in the brain, suggesting that the decrease might be caused by calpain over-activation. Our findings provide novel insight into the molecular mechanism by which type 2 diabetes mellitus increases the risk for developing cognitive impairment and dementia in Alzheimer's disease.

Alzheimer's disease research and treatmentsNatural Antidiabetic Agents StudiesMetabolism, Diabetes, and CancerProtein kinase BPI3K/AKT/mTOR pathwayNeurodegenerationInsulinInsulin receptorEndocrinologyInternal medicineDiabetes mellitusAlzheimer's diseaseDementia

MeSH terms

beta-ArrestinsAcylationAgedAged, 80 and overAlzheimer Diseasebeta-N-AcetylhexosaminidasesBrainCalpainDiabetes Mellitus, Type 2FemaleHumansInsulinMalePhosphorylationSignal Transduction

Funding

  • Office for People With Developmental Disabilities
  • National Institute on Aging
Citations
493
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