Cytoplasmic Restriction of Mutated SOD1 Impairs the DNA Repair Process in Spinal Cord Neurons

被引:20
|
作者
Li, Jiaojie [1 ]
Song, Miyoung [2 ]
Moh, Sanghyun [2 ]
Kim, Heemin [3 ]
Kim, Dae-Hwan [4 ]
机构
[1] Gwangju Inst Sci & Technol, Dept Chem, Gwangju 61005, South Korea
[2] Bio FD&C Co Ltd, Antiaging Res Inst, Incheon 21990, South Korea
[3] Seoul Natl Univ, Dept Med, Seoul 03080, South Korea
[4] DGIST, Sch Undergrad Studies, Daegu 42988, South Korea
基金
新加坡国家研究基金会;
关键词
amyotrophic lateral sclerosis; superoxide dismutase 1; DNA damage; protein disulphide isomerase; DNA repair; AMYOTROPHIC-LATERAL-SCLEROSIS; ENDOPLASMIC-RETICULUM STRESS; PROTEIN DISULFIDE-ISOMERASE; MUTANT SUPEROXIDE DISMUTASE-1; IONIZING-RADIATION; OXIDATIVE DAMAGE; BINDING-PROTEIN; ALS; P53; MODEL;
D O I
10.3390/cells8121502
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Amyotrophic lateral sclerosis (ALS) caused by mutation of superoxide dismutase 1 (SOD1), affects various cellular processes and results in the death of motor neurons with fatal defects. Currently, several neurological disorders associated with DNA damage are known to directly induce neurodegenerative diseases. In this research, we found that cytoplasmic restriction of SOD1G93A, which inhibited the nucleic translocation of SOD1WT, was directly related to increasing DNA damage in SOD1-mutated ALS disease. Our study showed that nucleic transport of DNA repair-processing proteins, such as p53, APEX1, HDAC1, and ALS-linked FUS were interfered with under increased endoplasmic reticulum (ER) stress in the presence of SOD1G93A. During aging, the unsuccessful recognition and repair process of damaged DNA, due to the mislocalized DNA repair proteins might be closely associated with the enhanced susceptibility of DNA damage in SOD1-mutated neurons. In addition, the co-expression of protein disulphide isomerase (PDI) directly interacting with SOD1 protein in neurons enhances the nucleic transport of cytoplasmic-restricted SOD1G93A. Therefore, our results showed that enhanced DNA damage by SOD1 mutation-induced ALS disease and further suggested that PDI could be a strong candidate molecule to protect neuronal apoptosis by reducing DNA damage in ALS disease.
引用
收藏
页数:20
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