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Enhanced Phosphorylation of Bax and Its Translocation into Mitochondria in the Brains of Individuals Affiliated with Alzheimer’s Disease

Authors :
S. G. Rhee
Xiongwei Zhu
L. E. Henderson
M. A. Abdelmegeed
Seong Ho Yoo
Richard Q. Nguyen
Byoung Joon Song
Mark A. Smith
George Perry
Source :
The Open Neurology Journal
Publication Year :
2017
Publisher :
Bentham Science Publishers Ltd., 2017.

Abstract

Background:Despite increased neuronal death, senile plaques, and neurofibrillary tangles observed in patients suffering from Alzheimer’s disease (AD), the detailed mechanism of cell death in AD is still poorly understood.Method:We hypothesized that p38 kinase activates and then phosphorylates Bax, leading to its translocation to mitochondria in AD brains compared to controls. The aim of this study was to investigate the role of p38 kinase in phosphorylation and sub-cellular localization of pro-apoptotic Bax in the frontal cortex of the brains from AD and control subjects. Increased oxidative stress in AD individuals compared to control was evaluated by measuring the levels of carbonylated proteins and oxidized peroxiredoxin, an antioxidant enzyme. The relative amounts of p38 kinase and phospho-Bax in mitochondria in AD brains and controls were determined by immunoblot analysis using the respective antibody against each protein following immunoprecipitation.Results:Our results showed that the levels of oxidized peroxiredoxin-SO3and carbonylated proteins are significantly elevated in AD brains compared to controls, demonstrating the increased oxidative stress.Conclusion:The amount of phospho-p38 kinase is increased in AD brains and the activated p38 kinase appears to phosphorylate Thr residue(s) of Bax, which leads to its mitochondrial translocation, contributing to apoptosis and ultimately, neurodegeneration.

Details

ISSN :
1874205X
Volume :
11
Database :
OpenAIRE
Journal :
The Open Neurology Journal
Accession number :
edsair.doi.dedup.....7fe7e37997c0a2c808d1535d6e4351fe
Full Text :
https://doi.org/10.2174/1874205x01711010048