Oxidative Stress in SEPN1-Related Myopathy: From Pathophysiology to Treatment

被引:114
作者
Arbogast, Sandrine [1 ,2 ]
Beuvin, Maud [1 ,2 ]
Fraysse, Bodvael [1 ,2 ]
Zhou, Haiyan [3 ,4 ]
Muntoni, Francesco [3 ,4 ]
Ferreiro, Ana [1 ,2 ,5 ]
机构
[1] INSERM, U582, Inst Myol, Paris, France
[2] Univ Paris 06, UMR S582, Inst Fed Rech 14, F-75013 Paris, France
[3] Inst Child Hlth, Dubowitz Neuromuscular Ctr, London, England
[4] Great Ormond St Hosp Sick Children, London WC1N 3JH, England
[5] GH Pitie Salpetriere, AP HP, Paris, France
关键词
SKELETAL-MUSCLE FIBERS; NITRIC-OXIDE SYNTHASE; SELENOPROTEIN-N GENE; CENTRAL CORE DISEASE; MUSCULAR-DYSTROPHY; REACTIVE OXYGEN; PROTEINS; CALCIUM; MICE; MUTATIONS;
D O I
10.1002/ana.21644
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Objective: Mutations of the selenoprotein N gene (SEPN1) cause SEPN1-relaced myopathy (SEPN1-RM), a novel early-onset muscle disorder formerly divided into four different nosological categories. Selenoprorein N (SelN) is the only selenoprotein involved in a genetic disease; its function being Unknown, no treatment is available for this potentially lethal disorder. Our objective was to clarify the role of SelN and the pathophysiology of SEPN1-RM to identify therapeutic targets. Methods: We established and analyzed an ex vivo model of SelN deficiency using Fibroblast and myoblast primary Cultures from patients with null SEPN1 Mutations. DCFH assay, OxyBlot, Western blot, Fura-2, and cell survival studies were performed to measure intracellular oxidant activity, oxidative stress markets, calcium handling, and response to exogenous treatments. Results: SelN-depleted cells showed oxidative/nitrosative stress manifested by increased intracellular oxidant activity (reactive oxygen species and nitric oxide) and/or excessive oxidation of proteins, including the contractile proteins actin and myosin heavy chain II in myotubes. SelN-devoid myotubes showed also Ca2+ homeostasis abnormalities suggesting dysfunction of the redox-sensor Ca2+ channel ryanodine receptor type 1. Furthermore, absence of SelN was associated with abnormal susceptibility to H2O2-induced oxidative stress, demonstrated by increased cell death. This cell phenotype was restored by pretreatment with the antioxidant N-acetylcysteine. Interpretation: SelN plays a key role in redox homeostasis and human cell protection against oxidative stress. Oxidative/nitrosative stress is a primary pathogenic mechanism in SEPN1-RM, which call be effectively targeted ex vivo by antioxidants. These Findings pave the way to SEPN1-RM treatment, which would represent a First specific pharmacological treatment for a congenital myopathy.
引用
收藏
页码:677 / 686
页数:10
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