High glucose and palmitic acid induces neuronal senescence by NRSF/REST elevation and the subsequent mTOR-related autophagy suppression.

Mol Brain

Department of Translational Neuroscience, Jing'an District Centre Hospital of Shanghai, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science, Fudan University, Shanghai, China.

Published: July 2022

AI Article Synopsis

  • Cell senescence is a key mechanism of aging, and while its role in tissues like fat, pancreas, and liver in relation to type 2 diabetes is established, its direct effects on neurons are still unclear.
  • In this study, researchers created a high glucose and palmitic acid (HGP) environment to simulate diabetes in neuronal cells and found that this condition triggered significant senescence-like traits in the neurons, linked to changes in specific proteins and cellular processes.
  • The findings suggest that diabetes can directly lead to neuronal senescence by increasing NRSF/REST levels, which then disrupts the mTOR-autophagy pathway, indicating a potential target for future therapies.

Article Abstract

Cell senescence is a basic aging mechanism. Previous studies have found that the cellular senescence in adipose tissue and other tissues, such as the pancreas, muscle and liver, is associated with the pathogenesis and progression of type 2 diabetes; however, strong evidence of whether diabetes directly causes neuronal senescence in the brain is still lacking. In this study, we constructed a high glucose and palmitic acid (HGP) environment on PC12 neuronal cells and primary mouse cortical neurons to simulate diabetes. Our results showed that after HGP exposure, neurons exhibited obvious senescence-like phenotypes, including increased NRSF/REST level, mTOR activation and cell autophagy suppression. Downregulation of NRSF/REST could remarkably alleviate p16, p21 and γH2A.X upregulations induced by HGP treatment, and enhance mTOR-autophagy of neurons. Our results suggested that the diabetic condition could directly induce neuronal senescence, which is mediated by the upregulation of NRSF/REST and subsequent reduction of mTOR-autophagy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9290252PMC
http://dx.doi.org/10.1186/s13041-022-00947-2DOI Listing

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