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Publication : Age-related hyperinsulinemia leads to insulin resistance in neurons and cell-cycle-induced senescence.

First Author  Chow HM Year  2019
Journal  Nat Neurosci Volume  22
Issue  11 Pages  1806-1819
PubMed ID  31636448 Mgi Jnum  J:281606
Mgi Id  MGI:6378314 Doi  10.1038/s41593-019-0505-1
Citation  Chow HM, et al. (2019) Age-related hyperinsulinemia leads to insulin resistance in neurons and cell-cycle-induced senescence. Nat Neurosci 22(11):1806-1819
abstractText  Prediabetes and Alzheimer's disease both increase in prevalence with age. The former is a risk factor for the latter, but a mechanistic linkage between them remains elusive. We show that prediabetic serum hyperinsulinemia is reflected in the cerebrospinal fluid and that this chronically elevated insulin renders neurons resistant to insulin. This leads to abnormal electrophysiological activity and other defects. In addition, neuronal insulin resistance reduces hexokinase 2, thus impairing glycolysis. This hampers the ubiquitination and degradation of p35, favoring its cleavage to p25, which hyperactivates CDK5 and interferes with the GSK3beta-induced degradation of beta-catenin. CDK5 contributes to neuronal cell death while beta-catenin enters the neuronal nucleus and re-activates the cell cycle machinery. Unable to successfully divide, the neuron instead enters a senescent-like state. These findings offer a direct connection between peripheral hyperinsulinemia, as found in prediabetes, age-related neurodegeneration and cognitive decline. The implications for neurodegenerative conditions such as Alzheimer's disease are described.
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