Alzheimer’s disease is a neurodegenerative disease that affected over 6.5 million people in the United States in 2021,with this number expected to double in the next 40 years without any sort of treatment.Due to its ...Alzheimer’s disease is a neurodegenerative disease that affected over 6.5 million people in the United States in 2021,with this number expected to double in the next 40 years without any sort of treatment.Due to its heterogeneity and complexity,the etiology of Alzheimer’s disease,especially sporadic Alzheimer’s disease,remains largely unclear.Compelling evidence suggests that brain glucose hypometabolism,preceding Alzheimer’s disease hallmarks,is involved in the pathogenesis of Alzheimer’s disease.Herein,we discuss the potential causes of reduced glucose uptake and the mechanisms underlying glucose hypometabolism and Alzheimer’s disease pathology.Specifically,decreased O-Glc NAcylation levels by glucose deficiency alter mitochondrial functions and together contribute to Alzheimer’s disease pathogenesis.One major problem with Alzheimer’s disease research is that the disease progresses for several years before the onset of any symptoms,suggesting the critical need for appropriate models to study the molecular changes in the early phase of Alzheimer’s disease progression.Therefore,this review also discusses current available sporadic Alzheimer’s disease models induced by metabolic abnormalities and provides novel directions for establishing a human neuronal sporadic Alzheimer’s disease model that better represents human sporadic Alzheimer’s disease as a metabolic disease.展开更多
AIM: To investigate the role of O-GIcNAcylation of nuclear factor-kappa B (NF-KB) in retinal ganglion cell (RGC) death and analysedthe effect of Aralia elata (AE) on neurodegen- eration in diabetic mice. METH...AIM: To investigate the role of O-GIcNAcylation of nuclear factor-kappa B (NF-KB) in retinal ganglion cell (RGC) death and analysedthe effect of Aralia elata (AE) on neurodegen- eration in diabetic mice. METHODS: C57BL/6mice with streptozotocin-induced diabetes were fed daily with AE extract or control (CTL) diet at the onset of diabetes mellitus (DM). Two months af- tar injection of streptozotocin or saline, the degree of cell death and the expression of O-GIcNAc transferase (OGT), N-acetyl-b-D-glucosaminidase (OGA), O-GIcNAcylated pro- teins, and O-GIcNAcylation of NF-KB were examined. RESULTS: AE did not affect the metabolic status of diabetic mice. The decrease in the inner retinal thickness (P〈0.001 vs CTL, P〈0.01 vs DM) and increases in RGCs with terminal deoxynucleotidyl transferase-mediated dUTP nick end labelling (P〈0.001 vs CTL, P〈0.0001 vs DM), glial activation, and active caspase-3 (P〈0.0001 vs CTL, P〈0.0001 vs DM) were blocked in diabetic retinas of AE extract-fed mice. Expression levels of protein O-GIcNAcylation and OGT were increased in diabetic retinas (P〈0.0001 vs CTL), and the level of O-GIcNAcylation of the NF-KB p65 subunit was higher in diabetic retinas than in controls (P〈0.0001 vs CTL). AE extract downregulated O-GIcNAcylation of NF-KB and prevented neurodegeneration induced by hyperglycemia (P〈0.0001 vs DM). CONCLUSION: O-GIcNAcylation of NF-KB is concerned in neuronal degeneration and that AE prevents diabetes-in- duced RGC apoptosis via downregulation of NF-KB O-GI- cNAcylation. Hence, O-GIcNAcylation may be a new object for the treatment of DR, and AE may have therapeutic pos- sibility to prevent diabetes-induced neurodegeneration.展开更多
基金supported by the Georgia Research Alliance and the University of Georgia(to GWH)。
文摘Alzheimer’s disease is a neurodegenerative disease that affected over 6.5 million people in the United States in 2021,with this number expected to double in the next 40 years without any sort of treatment.Due to its heterogeneity and complexity,the etiology of Alzheimer’s disease,especially sporadic Alzheimer’s disease,remains largely unclear.Compelling evidence suggests that brain glucose hypometabolism,preceding Alzheimer’s disease hallmarks,is involved in the pathogenesis of Alzheimer’s disease.Herein,we discuss the potential causes of reduced glucose uptake and the mechanisms underlying glucose hypometabolism and Alzheimer’s disease pathology.Specifically,decreased O-Glc NAcylation levels by glucose deficiency alter mitochondrial functions and together contribute to Alzheimer’s disease pathogenesis.One major problem with Alzheimer’s disease research is that the disease progresses for several years before the onset of any symptoms,suggesting the critical need for appropriate models to study the molecular changes in the early phase of Alzheimer’s disease progression.Therefore,this review also discusses current available sporadic Alzheimer’s disease models induced by metabolic abnormalities and provides novel directions for establishing a human neuronal sporadic Alzheimer’s disease model that better represents human sporadic Alzheimer’s disease as a metabolic disease.
基金Supported by the Basic Science Research Program Through the National Research Foundation(NRF)of Korea Funded by the Ministry of Science,ICT,and Future Planning 2014049413,NRF-2015R1A5A2008833 and NRF-2015R1C1A1A02037702
文摘AIM: To investigate the role of O-GIcNAcylation of nuclear factor-kappa B (NF-KB) in retinal ganglion cell (RGC) death and analysedthe effect of Aralia elata (AE) on neurodegen- eration in diabetic mice. METHODS: C57BL/6mice with streptozotocin-induced diabetes were fed daily with AE extract or control (CTL) diet at the onset of diabetes mellitus (DM). Two months af- tar injection of streptozotocin or saline, the degree of cell death and the expression of O-GIcNAc transferase (OGT), N-acetyl-b-D-glucosaminidase (OGA), O-GIcNAcylated pro- teins, and O-GIcNAcylation of NF-KB were examined. RESULTS: AE did not affect the metabolic status of diabetic mice. The decrease in the inner retinal thickness (P〈0.001 vs CTL, P〈0.01 vs DM) and increases in RGCs with terminal deoxynucleotidyl transferase-mediated dUTP nick end labelling (P〈0.001 vs CTL, P〈0.0001 vs DM), glial activation, and active caspase-3 (P〈0.0001 vs CTL, P〈0.0001 vs DM) were blocked in diabetic retinas of AE extract-fed mice. Expression levels of protein O-GIcNAcylation and OGT were increased in diabetic retinas (P〈0.0001 vs CTL), and the level of O-GIcNAcylation of the NF-KB p65 subunit was higher in diabetic retinas than in controls (P〈0.0001 vs CTL). AE extract downregulated O-GIcNAcylation of NF-KB and prevented neurodegeneration induced by hyperglycemia (P〈0.0001 vs DM). CONCLUSION: O-GIcNAcylation of NF-KB is concerned in neuronal degeneration and that AE prevents diabetes-in- duced RGC apoptosis via downregulation of NF-KB O-GI- cNAcylation. Hence, O-GIcNAcylation may be a new object for the treatment of DR, and AE may have therapeutic pos- sibility to prevent diabetes-induced neurodegeneration.