首页> 美国卫生研究院文献>International Journal of Molecular Medicine >Comparative proteomic profiling of soleus extensor digitorum longus flexor digitorum brevis and interosseus muscles from the mdx mouse model of Duchenne muscular dystrophy
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Comparative proteomic profiling of soleus extensor digitorum longus flexor digitorum brevis and interosseus muscles from the mdx mouse model of Duchenne muscular dystrophy

机译:从杜兴氏肌营养不良症的mdx小鼠模型比较比目鱼肌趾长伸肌屈指短屈肌和骨间肌的蛋白质组学分析

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摘要

Duchenne muscular dystrophy is due to genetic abnormalities in the dystrophin gene and represents one of the most frequent genetic childhood diseases. In the X-linked muscular dystrophy (mdx) mouse model of dystrophinopathy, different subtypes of skeletal muscles are affected to a varying degree albeit the same single base substitution within exon 23 of the dystrophin gene. Thus, to determine potential muscle subtype-specific differences in secondary alterations due to a deficiency in dystrophin, in this study, we carried out a comparative histological and proteomic survey of mdx muscles. We intentionally included the skeletal muscles that are often used for studying the pathomechanism of muscular dystrophy. Histological examinations revealed a significantly higher degree of central nucleation in the soleus and extensor digitorum longus muscles compared with the flexor digitorum brevis and interosseus muscles. Muscular hypertrophy of 20–25% was likewise only observed in the soleus and extensor digitorum longus muscles from mdx mice, but not in the flexor digitorum brevis and interosseus muscles. For proteomic analysis, muscle protein extracts were separated by fluorescence two-dimensional (2D) gel electrophoresis. Proteins with a significant change in their expression were identified by mass spectrometry. Proteomic profiling established an altered abundance of 24, 17, 19 and 5 protein species in the dystrophin-deficient soleus, extensor digitorum longus, flexor digitorum brevis and interosseus muscle, respectively. The key proteomic findings were verified by immunoblot analysis. The identified proteins are involved in the contraction-relaxation cycle, metabolite transport, muscle metabolism and the cellular stress response. Thus, histological and proteomic profiling of muscle subtypes from mdx mice indicated that distinct skeletal muscles are differentially affected by the loss of the membrane cytoskeletal protein, dystrophin. Varying degrees of perturbed protein expression patterns in the muscle subtypes from mdx mice may be due to dissimilar downstream events, including differences in muscle structure or compensatory mechanisms that counteract pathophysiological processes. The interosseus muscle from mdx mice possibly represents a naturally protected phenotype.
机译:杜氏肌营养不良症是由于肌营养不良蛋白基因的遗传异常所致,是儿童期最常见的遗传疾病之一。在肌营养不良症的X连锁肌营养不良(mdx)小鼠模型中,骨骼肌的不同亚型受到不同程度的影响,尽管肌营养不良蛋白基因第23外显子具有相同的单碱基取代。因此,为了确定由于肌营养不良蛋白缺乏引起的继发性改变中潜在的亚型特异性差异,在这项研究中,我们对mdx肌肉进行了组织学和蛋白质组学比较研究。我们特意纳入了通常用于研究肌营养不良症的致病机理的骨骼肌。组织学检查显示,比目鱼屈短肌和耻骨间肌的比目鱼肌和伸指长肌的中央成核度明显更高。同样,仅在mdx小鼠的比目鱼肌和指趾长肌中观察到20–25%的肌肉肥大,而在短指屈肌和骨间肌中则没有观察到。对于蛋白质组学分析,通过荧光二维(2D)凝胶电泳分离肌肉蛋白质提取物。通过质谱鉴定了表达具有显着变化的蛋白质。蛋白质组学分析分别确定了肌营养不良蛋白缺乏的比目鱼肌,趾长伸肌,短屈屈肌和耻骨间肌中24、17、19和5种蛋白质种类的变化。关键蛋白质组学发现通过免疫印迹分析得到了验证。鉴定出的蛋白质参与了放松松弛的循环,代谢物的运输,肌肉的新陈代谢和细胞应激反应。因此,来自mdx小鼠的肌肉亚型的组织学和蛋白质组学分析表明,不同的骨骼肌受到膜细胞骨架蛋白dystrophin丢失的差异影响。来自mdx小鼠的肌肉亚型中受干扰的蛋白质表达模式的变化程度可能是由于下游事件的不同,包括不同的肌肉结构或抵消病理生理过程的补偿机制。来自mdx小鼠的骨间肌可能代表了一种自然保护的表型。

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