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Axonal Domain Disorganization in Caspr1 and Caspr2 Mutant Myelinated Axons Affects Neuromuscular Junction Integrity Leading to Muscle Atrophy

机译:Caspr1和Caspr2突变的髓鞘轴突中的轴突域紊乱影响神经肌肉连接完整性导致肌肉萎缩。

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摘要

Bidirectional interactions between neurons and myelinating glial cells result in formation of axonal domains along myelinated fibers. Loss of axonal domains leads to detrimental consequences on nerve structure and function resulting in reduced conductive properties and the diminished ability to reliably transmit signals to the targets they innervate. Thus, impairment of peripheral myelinated axons that project to the surface of muscle fibers and form neuromuscular junction (NMJ) synapses leads to muscle dysfunction. The goal of our studies was to determine how altered electrophysiological properties due to axonal domains disorganization lead to muscle pathology, which is relevant to a variety of peripheral neuropathies, demyelinating diseases and neurodegenerative disorders. Using conventional Contactin-Associated Protein 1 (Caspr1) and Caspr2 single or double mutants with disrupted paranodal, juxtaparanodal or both regions, respectively, in peripheral myelinated axons, we correlated defects in NMJ integrity and muscle pathology. Our data show that loss of axonal domains in Caspr1 and Caspr2 single and double mutants primarily alters distal myelinated fibers together with presynaptic terminals, eventually leading to NMJ denervation and reduction in postsynaptic endplate areas. Moreover, reduction in conductive properties of peripheral myelinated fibers together with NMJ disintegration leads to muscle atrophy in Caspr1 mutants or muscle fiber degeneration accompanied with mitochondrial dysfunction in Caspr1/Caspr2 double mutants. Together our data indicate that proper organization of axonal domains in myelinated fibers is critical for optimal propagation of electrical signals, NMJ integrity and muscle health, and provide insights into a wide range of pathologies that result in reduced nerve conduction leading to muscle atrophy.
机译:神经元和有髓神经胶质细胞之间的双向相互作用导致沿有髓纤维形成轴突结构域。轴突结构域的丧失导致对神经结构和功能的有害影响,从而导致传导特性降低,以及将信号可靠地传递至它们所支配的目标的能力降低。因此,突出到肌肉纤维表面并形成神经肌肉接头(NMJ)突触的外周髓鞘轴突的损伤导致肌肉功能障碍。我们研究的目的是确定由于轴突结构域紊乱而引起的电生理特性改变如何导致肌肉病理变化,这与多种周围神经病变,脱髓鞘疾病和神经退行性疾病有关。使用常规的接触素相关蛋白1(Caspr1)和Caspr2单突变或双突变,分别在外周有髓鞘轴突中破坏了旁淋巴结,近旁淋巴结或两个区域,我们将NMJ完整性和肌肉病理学相关联。我们的数据表明,Caspr1和Caspr2单突变体和双突变体中轴突结构域的丧失主要改变了远端髓鞘纤维以及突触前末端,最终导致NMJ神经支配和突触后终板面积的减少。此外,外围有髓纤维的导电性能下降以及NMJ分解导致Caspr1突变体中的肌肉萎缩或Caspr1 / Caspr2 double突变体中的肌肉纤维变性伴有线粒体功能障碍。我们的数据共同表明,在有髓纤维中轴突结构域的正确组织对于电信号的最佳传播,NMJ完整性和肌肉健康至关重要,并且可以洞悉导致神经萎缩导致肌肉萎缩的多种病理。

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