首页> 外文OA文献 >Muscle-specific function of the centronuclear myopathy and Charcot-Marie-Tooth neuropathy-associated dynamin 2 is required for proper lipid metabolism, mitochondria, muscle fibers, neuromuscular junctions and peripheral nerves
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Muscle-specific function of the centronuclear myopathy and Charcot-Marie-Tooth neuropathy-associated dynamin 2 is required for proper lipid metabolism, mitochondria, muscle fibers, neuromuscular junctions and peripheral nerves

机译:适当的脂质代谢,线粒体,肌肉纤维,神经肌肉接头和周围神经需要中心核肌病和Charcot-Marie-Tooth神经病相关的动力2的肌肉特定功能

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摘要

The ubiquitously expressed large GTPase Dynamin 2 (DNM2) plays a critical role in the regulation of intracellular membrane trafficking through its crucial function in membrane fission, particularly in endocytosis. Autosomal-dominant mutations in DNM2 cause tissue-specific human disorders. Different sets of DNM2 mutations are linked to dominant intermediate Charcot-Marie-Tooth neuropathy type B, a motor and sensory neuropathy affecting primarily peripheral nerves, or autosomal-dominant centronuclear myopathy (CNM) presenting with primary damage in skeletal muscles. To understand the underlying disease mechanisms, it is imperative to determine to which degree the primary affected cell types require DNM2. Thus, we used cell type-specific gene ablation to examine the consequences of DNM2 loss in skeletal muscle cells, the major relevant cell type involved in CNM. We found that DNM2 function in skeletal muscle is required for proper mouse development. Skeletal muscle-specific loss of DNM2 causes a reduction in muscle mass and in the numbers of muscle fibers, altered muscle fiber size distributions, irregular neuromuscular junctions (NMJs) and isolated degenerating intramuscular peripheral nerve fibers. Intriguingly, a lack of muscle-expressed DNM2 triggers an increase of lipid droplets (LDs) and mitochondrial defects. We conclude that loss of DNM2 function in skeletal muscles initiates a chain of harmful parallel and serial events, involving dysregulation of LDs and mitochondrial defects within altered muscle fibers, defective NMJs and peripheral nerve degeneration. These findings provide the essential basis for further studies on DNM2 function and malfunction in skeletal muscles in health and disease, potentially including metabolic diseases such as diabetes
机译:普遍表达的大GTP酶Dynamin 2(DNM2)通过其在膜裂变,特别是在胞吞作用中的关键功能,在调节细胞内膜运输中起关键作用。 DNM2中的常染色体显性突变会导致组织特异性人类疾病。不同的DNM2突变集与主要的中间Charcot-Marie-Tooth神经病B型,主要影响周围神经的运动神经和感觉神经病或常染色体显性中心核肌病(CNM)引起骨骼肌原发性损伤有关。为了了解潜在的疾病机制,必须确定主要受影响的细胞类型需要DNM2的程度。因此,我们使用细胞类型特异性基因消融来检查DNM2在骨骼肌细胞中丢失的后果,骨骼肌细胞是CNM中涉及的主要相关细胞类型。我们发现骨骼肌中的DNM2功能是正常小鼠发育所必需的。 DNM2的骨骼肌特异性丢失会导致肌肉质量和肌肉纤维数量减少,肌肉纤维大小分布改变,不规则的神经肌肉接头(NMJ)以及孤立的退化性肌内周围神经纤维。有趣的是,缺乏肌肉表达的DNM2会触发脂质滴(LDs)和线粒体缺陷的增加。我们得出的结论是,骨骼肌中DNM2功能的丧失会引发一系列有害的平行和串行事件,包括LDs失调和肌肉纤维改变,线粒体NMJ和周围神经变性的线粒体缺陷。这些发现为进一步研究DNM2在健康和疾病(可能包括代谢性疾病,例如糖尿病)中骨骼肌的功能和功能失常提供了必要的基础。

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