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髓鞘脱失和钠通道重分布导致 PMP22 敲除小鼠的听觉和前庭功能障碍。

Demyelination and Na Channel Redistribution Underlie Auditory and Vestibular Dysfunction in PMP22-Null Mice.

机构信息

Department of Physiology and Cell Biology, School of Medicine, University of Nevada, Reno, Reno 89557, Nevada.

Prestige BioPharma, Busan 67264, South Korea.

出版信息

eNeuro. 2024 Feb 20;11(2). doi: 10.1523/ENEURO.0462-23.2023. Print 2024 Feb.

Abstract

Altered expression of peripheral myelin protein 22 (PMP22) results in demyelinating peripheral neuropathy. PMP22 exhibits a highly restricted tissue distribution with marked expression in the myelinating Schwann cells of peripheral nerves. Auditory and vestibular Schwann cells and the afferent neurons also express PMP22, suggesting a unique role in hearing and balancing. Indeed, neuropathic patients diagnosed with PMP22-linked hereditary neuropathies often present with auditory and balance deficits, an understudied clinical complication. To investigate the mechanism by which abnormal expression of PMP22 may cause auditory and vestibular deficits, we studied gene-targeted -null mice. -null mice exhibit an unsteady gait, have difficulty maintaining balance, and live for only ∼3-5 weeks relative to unaffected littermates. Histological analysis of the inner ear revealed reduced auditory and vestibular afferent nerve myelination and profound Na channel redistribution without PMP22. Yet, Na current density was unaltered, in stark contrast to increased K current density. Atypical postsynaptic densities and a range of neuronal abnormalities in the organ of Corti were also identified. Analyses of auditory brainstem responses (ABRs) and vestibular sensory-evoked potential (VsEP) revealed that -null mice had auditory and vestibular hypofunction. These results demonstrate that PMP22 is required for hearing and balance, and the protein is indispensable for the formation and maintenance of myelin in the peripheral arm of the eighth nerve. Our findings indicate that myelin abnormalities and altered signal propagation in the peripheral arm of the auditory nerve are likely causes of auditory deficits in patients with PMP22-linked neuropathies.

摘要

外周髓鞘蛋白 22(PMP22)表达改变导致脱髓鞘周围神经病。PMP22 在周围神经的髓鞘施万细胞中表现出高度受限的组织分布,表达明显。听觉和前庭施万细胞和传入神经元也表达 PMP22,表明其在听力和平衡中具有独特的作用。事实上,患有 PMP22 相关遗传性神经病的神经病变患者经常出现听力和平衡缺陷,这是一种研究不足的临床并发症。为了研究 PMP22 异常表达如何导致听觉和前庭功能障碍的机制,我们研究了基因靶向 -null 小鼠。-null 小鼠表现出不稳定的步态,难以保持平衡,与未受影响的同窝仔鼠相比,仅存活 3-5 周。内耳的组织学分析显示,听觉和前庭传入神经髓鞘减少,Na 通道严重重新分布,没有 PMP22。然而,Na 电流密度没有改变,与增加的 K 电流密度形成鲜明对比。在后 Corti 器官中也发现了异常的突触后密度和一系列神经元异常。听觉脑干反应(ABR)和前庭感觉诱发电位(VsEP)的分析表明,-null 小鼠的听觉和前庭功能低下。这些结果表明 PMP22 是听力和平衡所必需的,并且该蛋白对于第八神经外周臂的髓鞘形成和维持是必不可少的。我们的研究结果表明,髓鞘异常和听觉神经外周臂中信号传递的改变可能是 PMP22 相关神经病患者听力缺陷的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a54/11059428/ba41bcd15dc3/eneuro-11-ENEURO.0462-23.2023-g001.jpg

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