铁的补充减轻了面部肩胛肱肌营养不良小鼠模型的病理。

Kodai Nakamura,Huascar-Pedro Ortuste-Quiroga,Naoki Horii,Shin Fujimaki,Toshiro Moroishi,Keiichi I Nakayama,Shinjiro Hino,Yoshihiko Saito,Ichizo Nishino,Yusuke Ono
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摘要

面肩肱骨肌营养不良症(FSHD)是一种由毒性蛋白DUX4异位表达引起的遗传性肌肉疾病,导致肌肉无力。然而,DUX4发挥其毒性的机制尚不清楚。在这项研究中,我们在FSHD患者和肌肉特异性DUX4-Tg表达小鼠的肌肉中观察到异常的铁积累。在DUX4-Tg小鼠中,铁螯合剂、缺铁饮食和抑制细胞内铁摄取的基因修饰并没有改善FSHD病理,反而加剧了FSHD病理。然而,出乎意料的是,无论是高铁饮食还是静脉补铁,都能显著改善DUX4-Tg小鼠的握力和跑步表现。补充铁抑制异常铁积累和铁中毒相关途径,包括DUX4-Tg肌肉中脂质过氧化的增加。肌肉特异性DUX4表达导致视网膜血管病变,这是FSHD病理的一部分,铁可以预防。此外,铁下垂途径的高通量化合物筛选确定了候选药物,包括铁抑素-1 (ferr -1),一种有效的脂质过氧化抑制剂。用fe -1治疗可显著改善DUX4-Tg小鼠的身体功能。我们的研究结果表明,dux4引起的毒性参与了铁中毒相关途径的激活,补充铁可能是FSHD的一种有希望且容易获得的治疗选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iron supplementation alleviates pathologies in a mouse model of facioscapulohumeral muscular dystrophy.
Facioscapulohumeral muscular dystrophy (FSHD) is a genetic muscle disease caused by ectopic expression of the toxic protein DUX4, resulting in muscle weakness. However, the mechanism by which DUX4 exerts its toxicity remains unclear. In this study, we observed abnormal iron accumulation in muscles of patients with FSHD and in muscle-specific DUX4-expressing (DUX4-Tg) mice. Treatment with iron chelators, an iron-deficient diet, and genetic modifications inhibiting intracellular uptake of iron did not improve but rather exacerbated FSHD pathology in DUX4-Tg mice. Unexpectedly, however, iron supplementation, either from a high-iron diet or intravenous iron administration, resulted in remarkable improvement in grip strength and running performance in DUX4-Tg mice. Iron supplementation suppressed abnormal iron accumulation and the ferroptosis-related pathway involving increased lipid peroxidation in DUX4-Tg muscle. Muscle-specific DUX4 expression led to retinal vasculopathy, a part of FSHD pathology, which was prevented by iron administration. Furthermore, high-throughput compound screening of the ferroptosis pathway identified drug candidates including Ferrostatin-1 (Fer-1), a potent inhibitor of lipid peroxidation. Treatment with Fer-1 dramatically improved physical function in DUX4-Tg mice. Our findings demonstrate that DUX4-provoked toxicity is involved in the activation of the ferroptosis-related pathway and that supplementary iron could be a promising and readily available therapeutic option for FSHD.
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