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肌神经接点的改变和肌肉代谢的变化对 ALS-FTD 综合征小鼠模型中神经元特异性表达 CHMP2B 突变体的反应。

Alteration of the Neuromuscular Junction and Modifications of Muscle Metabolism in Response to Neuron-Restricted Expression of the CHMP2B Mutant in a Mouse Model of ALS-FTD Syndrome.

机构信息

INSERM U1118 Mécanismes Centraux et Périphériques de la Neurodégénérescence, Centre de Recherche en Biomédecine de Strasbourg, Université de Strasbourg, 67000 Strasbourg, France.

Medical Center, Shenzhen University Health Science Center, Shenzhen 518060, China.

出版信息

Biomolecules. 2022 Mar 24;12(4):497. doi: 10.3390/biom12040497.

Abstract

CHMP2B is a protein that coordinates membrane scission events as a core component of the ESCRT machinery. Mutations in CHMP2B are an uncommon cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD), two neurodegenerative diseases with clinical, genetic, and pathological overlap. Different mutations have now been identified across the ALS-FTD spectrum. Disruption of the neuromuscular junction is an early pathogenic event in ALS. Currently, the links between neuromuscular junction functionality and ALS-associated genes, such as CHMP2B, remain poorly understood. We have previously shown that CHMP2B transgenic mice expressing the CHMP2B mutant specifically in neurons develop a progressive motor phenotype reminiscent of ALS. In this study, we used complementary approaches (behavior, histology, electroneuromyography, and biochemistry) to determine the extent to which neuron-specific expression of CHMP2B could impact the skeletal muscle characteristics. We show that neuronal expression of the CHMP2B mutant is sufficient to trigger progressive gait impairment associated with structural and functional changes in the neuromuscular junction. Indeed, CHMP2B alters the pre-synaptic terminal organization and the synaptic transmission that ultimately lead to a switch of fast-twitch glycolytic muscle fibers to more oxidative slow-twitch muscle fibers. Taken together these data indicate that neuronal expression of CHMP2B is sufficient to induce a synaptopathy with molecular and functional changes in the motor unit reminiscent of those found in ALS patients.

摘要

CHMP2B 是一种蛋白质,作为 ESCRT 机器的核心组成部分,协调膜分裂事件。CHMP2B 突变是肌萎缩侧索硬化症 (ALS) 和额颞叶痴呆 (FTD) 的罕见病因,这两种神经退行性疾病在临床、遗传和病理上有重叠。现在已经在 ALS-FTD 谱中鉴定出不同的突变。神经肌肉接头的破坏是 ALS 的早期致病事件。目前,神经肌肉接头功能与 ALS 相关基因(如 CHMP2B)之间的联系仍知之甚少。我们之前已经表明,在神经元中特异性表达 CHMP2B 突变体的 CHMP2B 转基因小鼠会发展出类似于 ALS 的进行性运动表型。在这项研究中,我们使用互补方法(行为、组织学、电神经生理学和生物化学)来确定神经元特异性表达 CHMP2B 对骨骼肌特征的影响程度。我们表明,神经元中 CHMP2B 突变体的表达足以引发进行性步态障碍,这与神经肌肉接头的结构和功能变化有关。事实上,CHMP2B 改变了突触前终端的组织和突触传递,最终导致快速抽搐糖酵解肌纤维向更氧化的慢抽搐肌纤维的转换。这些数据表明,神经元中 CHMP2B 的表达足以诱导突触病,运动单位的分子和功能变化类似于在 ALS 患者中发现的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b368/9025139/5eb47370b2c5/biomolecules-12-00497-g001.jpg

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