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一种突变的 MATR3 小鼠模型,用于解释多系统蛋白病。

A mutant MATR3 mouse model to explain multisystem proteinopathy.

机构信息

Department of Neurology, Graduate School of Medical Sciences, Kumamoto University, Kumamoto, Japan.

Department of Clinical Investigation, Kumamoto University Hospital, Kumamoto, Japan.

出版信息

J Pathol. 2019 Oct;249(2):182-192. doi: 10.1002/path.5289. Epub 2019 Jun 18.

Abstract

Mutations in the Matrin 3 (MATR3) gene have been identified as a cause of amyotrophic lateral sclerosis (ALS) or vocal cord and pharyngeal weakness with distal myopathy (VCPDM). This study investigated the mechanism by which mutant MATR3 causes multisystem proteinopathy (MSP) including ALS and VCPDM. We first analyzed the muscle pathology of C57BL/6 mice injected with adeno-associated viruses expressing human WT or mutant (S85C) MATR3. We next generated transgenic mice that overexpress mutant (S85C) MATR3, driven by the CMV early enhancer/chicken β-actin promoter, and evaluated their clinicopathological features. Intramuscular injection of viruses expressing WT and mutant MATR3 induced similar myogenic changes, including smaller myofibers with internal nuclei, and upregulated p62 and LC3-II. Mutant MATR3 transgenic mice showed decreased body weight and lower motor activity. Muscle histology demonstrated myopathic changes including fiber-size variation, internal nuclei and rimmed vacuoles. Spinal cord histology showed a reduced number of motor neurons, and activation of microglia and astrocytes. Comprehensive proteomic analyses of muscle demonstrated upregulation of proteins related to chaperones, stress response, protein degradation, and nuclear function. Overexpression of WT and mutant MATR3 similarly caused myotoxicity, recapitulating the clinicopathological features of MSP. These models will be helpful for analyzing MSP pathogenesis and for understanding the function of MATR3. © 2019 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.

摘要

Matrin 3(MATR3)基因突变已被确定为肌萎缩侧索硬化症(ALS)或声带和咽部无力伴远端肌病(VCPDM)的病因。本研究探讨了突变 MATR3 导致包括 ALS 和 VCPDM 在内的多系统蛋白病(MSP)的机制。我们首先分析了表达人 WT 或突变(S85C)MATR3 的腺相关病毒注射的 C57BL/6 小鼠的肌肉病理学。接下来,我们生成了过表达突变(S85C)MATR3 的转基因小鼠,由 CMV 早期增强子/鸡β-肌动蛋白启动子驱动,并评估了它们的临床病理特征。表达 WT 和突变 MATR3 的病毒的肌内注射诱导了类似的肌生成变化,包括具有内部核的较小肌纤维,以及上调的 p62 和 LC3-II。突变 MATR3 转基因小鼠表现出体重减轻和较低的运动活性。肌肉组织学显示出肌病变化,包括纤维大小变化、内部核和边缘空泡。脊髓组织学显示运动神经元数量减少,小胶质细胞和星形胶质细胞激活。肌肉的综合蛋白质组学分析表明,与伴侣、应激反应、蛋白质降解和核功能相关的蛋白质上调。WT 和突变 MATR3 的过表达同样导致肌毒性,再现了 MSP 的临床病理特征。这些模型将有助于分析 MSP 的发病机制,并了解 MATR3 的功能。©2019 英国和爱尔兰病理学会。由 John Wiley & Sons,Ltd 出版。

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