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微管相关蛋白tau(MAPT)突变V337M和N297K改变额颞叶痴呆患者特异性运动神经元中的细胞器运输。

MAPT Mutations V337M and N297K Alter Organelle Trafficking in Frontotemporal Dementia Patient-Specific Motor Neurons.

作者信息

Hartmann Christiane, Anskat Marie, Ehrlich Marc, Sterneckert Jared, Pal Arun, Hermann Andreas

机构信息

Translational Neurodegeneration Section "Albrecht Kossel", Department of Neurology, University Medical Center Rostock, 18057 Rostock, Germany.

Division for Neurodegenerative Diseases, Department of Neurology, Technische Universität Dresden, 01307 Dresden, Germany.

出版信息

Biomedicines. 2024 Mar 13;12(3):641. doi: 10.3390/biomedicines12030641.

Abstract

Frontotemporal dementia (FTD) is a neurodegenerative disease characterized by the progressive loss of neurons mainly in the frontal and temporal lobes of the brain. Mutations (e.g., V337M, N297K) in the microtubule-associated protein TAU (MAPT) are responsible 5-20% of familial FTD cases and have been associated with defects in organelle trafficking that plays a critical role in the proper function of cells, including transport of essential molecules and degradation of waste products. Due to the critical role of TAU mutations in microtubule stabilization and organelle transportation, it is of great interest to study these molecular mechanisms to develop effective therapeutic strategies. Therefore, herein, we analyzed mitochondrial and lysosomal trafficking in disease-specific spinal motor neurons by using live cell imaging in undirected (uncompartmentalized) and directed (compartmentalized) cell culture systems. While V337M neurons only expressed 3R TAU, the N297K mutant neurons expressed both 3R and 4R TAU. Axonal trafficking was affected differentially in V337M and N297 MAPT mutated neurons. These findings suggest that the MAPT mutations V337M and N297K impaired axon physiology differentially, which highlights the need for mutation- and/or 3R/4R TAU-specific therapeutic approaches.

摘要

额颞叶痴呆(FTD)是一种神经退行性疾病,其特征是主要在大脑额叶和颞叶的神经元进行性丧失。微管相关蛋白TAU(MAPT)中的突变(例如V337M、N297K)导致5%-20%的家族性FTD病例,并与细胞器运输缺陷有关,而细胞器运输在细胞的正常功能中起着关键作用,包括必需分子的运输和废物的降解。由于TAU突变在微管稳定和细胞器运输中起关键作用,研究这些分子机制以开发有效的治疗策略具有重要意义。因此,在本文中,我们通过在无定向(非分隔)和定向(分隔)细胞培养系统中使用活细胞成像技术,分析了疾病特异性脊髓运动神经元中的线粒体和溶酶体运输。虽然V337M神经元仅表达3R TAU,但N297K突变神经元同时表达3R和4R TAU。轴突运输在V337M和N297 MAPT突变神经元中受到不同影响。这些发现表明,MAPT突变V337M和N297K对轴突生理功能的损害存在差异,这突出了针对突变和/或3R/4R TAU特异性治疗方法的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b3/10968393/c8f633253f6c/biomedicines-12-00641-g001.jpg

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