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首页> 外文期刊>Biochemical Society Transactions >Does satellite cell dysfunction contribute to disease progression in Emery-Dreifuss muscular dystrophy?
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Does satellite cell dysfunction contribute to disease progression in Emery-Dreifuss muscular dystrophy?

机译:卫星细胞功能障碍是否有助于埃默里 - 雷利肌营养不良的疾病进展?

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摘要

Muscular dystrophies comprise at least 34 conditions, characterized by progressive skeletal muscle weakness and degeneration. The loci affected include mutations in both muscle-specific genes and genes that are more widely expressed such as LMNA and EMD, responsible for EDMD (Emery-Dreifuss muscular dystrophy). LMNA encodes A-type lamins, whereas EMD encodes emerin, both located in the nuclear envelope. Mutation or loss of A-type lamins or emerin in the terminally differentiated myonuclei of muscle fibres results in muscle damage. Importantly, since LMNA and EMD are also expressed by the resident skeletal muscle stem cells, the satellite cells, the mutations that cause muscle damage may also directly compromise the regenerative response. Thus EDMD is different from dystrophic conditions such as Duchenne muscular dystrophy, where the mutated gene is only expressed in the muscle fibres. In this brief review, we examine the evidence that myoblasts carrying EDMD-causing mutations are compromised, and discuss the possibility that such dysfunction results in reduced efficiency of muscle regeneration, so actively contributes to disease progression.
机译:肌肉营养不良症至少包括34个疾病,其特征是进行性骨骼肌无力和变性。受影响的基因座包括肌肉特异性基因和更广泛表达的基因的突变,例如LMNA和EMD,负责EDMD(Emery-Dreifuss肌肉营养不良)。 LMNA编码A型层状,而EMD编码emerin,均位于核包膜中。在末端分化的肌肉纤维的肌核中,A型层粘连蛋白或Emerin的突变或丧失会导致肌肉损伤。重要的是,由于LMNA和EMD也由驻留的骨骼肌干细胞(卫星细胞)表达,因此引起肌肉损伤的突变也可能直接损害再生反应。因此,EDMD不同于营养不良的肌营养不良,其中突变的基因仅在肌肉纤维中表达。在这篇简短的综述中,我们研究了携带EDMD突变的肌细胞受到损害的证据,并讨论了这种功能障碍导致肌肉再生效率降低的可能性,因此会积极地有助于疾病进展。

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