Glutaredoxin 2 prevents aggregation of mutant SOD1 in mitochondria and abolishes its toxicity

被引:79
作者
Ferri, Alberto [2 ,3 ]
Fiorenzo, Paolo [3 ]
Nencini, Monica [3 ]
Cozzolino, Mauro [3 ]
Pesaresi, Maria Grazia [1 ,3 ]
Valle, Cristiana [3 ,4 ]
Sepe, Sara [5 ]
Moreno, Sandra [5 ]
Carri, Maria Teresa [1 ,3 ]
机构
[1] Univ Roma Tor Vergata, Dipartimento Biol, I-00133 Rome, Italy
[2] CNR, Inst Neurosci, Rome, Italy
[3] Fdn S Lucia IRCCS, Neurochem Lab, Rome, Italy
[4] CNR, Inst Cell Biol, Rome, Italy
[5] Univ Rome Roma Tre, Dept Biol LIME, Rome, Italy
关键词
AMYOTROPHIC-LATERAL-SCLEROSIS; ZN-SUPEROXIDE-DISMUTASE; CONSTITUTIVE EXPRESSION; OXIDATIVE DAMAGE; TRANSGENIC MICE; HUMAN BRAIN; COMPLEX-I; DISULFIDE; MOUSE; PROTEIN;
D O I
10.1093/hmg/ddq383
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Vulnerability of motoneurons in amyotrophic lateral sclerosis (ALS) arises from a combination of several mechanisms, including protein misfolding and aggregation, mitochondrial dysfunction and oxidative damage. Protein aggregates are found in motoneurons in models for ALS linked to a mutation in the gene coding for Cu,Zn superoxide dismutase (SOD1) and in ALS patients as well. Aggregation of mutant SOD1 in the cytoplasm and/or into mitochondria has been repeatedly proposed as a main culprit for the degeneration of motoneurons. It is, however, still debated whether SOD1 aggregates represent a cause, a correlate or a consequence of processes leading to cell death. We have exploited the ability of glutaredoxins (Grxs) to reduce mixed disulfides to protein thiols either in the cytoplasm and in the IMS (Grx1) or in the mitochondrial matrix (Grx2) as a tool for restoring a correct redox environment and preventing the aggregation of mutant SOD1. Here we show that the overexpression of Grx1 increases the solubility of mutant SOD1 in the cytosol but does not inhibit mitochondrial damage and apoptosis induced by mutant SOD1 in neuronal cells (SH-SY5Y) or in immortalized motoneurons (NSC-34). Conversely, the overexpression of Grx2 increases the solubility of mutant SOD1 in mitochondria, interferes with mitochondrial fragmentation by modifying the expression pattern of proteins involved in mitochondrial dynamics, preserves mitochondrial function and strongly protects neuronal cells from apoptosis. The toxicity of mutant SOD1, therefore, mostly arises from mitochondrial dysfunction and rescue of mitochondrial damage may represent a promising therapeutic strategy.
引用
收藏
页码:4529 / 4542
页数:14
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