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ALS 相关 FUS(P525L)变体不会直接干扰微管依赖性驱动蛋白-1 的运动。

The ALS-Associated FUS (P525L) Variant Does Not Directly Interfere with Microtubule-Dependent Kinesin-1 Motility.

机构信息

Department of Neurology, Technische Universität Dresden, 01307 Dresden, Germany.

German Center for Neurodegenerative Diseases (DZNE), 01307 Dresden, Germany.

出版信息

Int J Mol Sci. 2021 Feb 28;22(5):2422. doi: 10.3390/ijms22052422.

Abstract

Deficient intracellular transport is a common pathological hallmark of many neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS). Mutations in the fused-in-sarcoma (FUS) gene are one of the most common genetic causes for familial ALS. Motor neurons carrying a mutation in the nuclear localization sequence of FUS (P525L) show impaired axonal transport of several organelles, suggesting that mislocalized cytoplasmic FUS might directly interfere with the transport machinery. To test this hypothesis, we studied the effect of FUS on kinesin-1 motility . Using a modified microtubule gliding motility assay on surfaces coated with kinesin-1 motor proteins, we showed that neither recombinant wildtype and P525L FUS variants nor lysates from isogenic ALS-patient-specific iPSC-derived spinal motor neurons expressing those FUS variants significantly affected gliding velocities. We hence conclude that during ALS pathogenesis the initial negative effect of FUS (P525L) on axonal transport is an indirect nature and requires additional factors or mechanisms.

摘要

细胞内运输缺陷是许多神经退行性疾病的共同病理特征,包括肌萎缩侧索硬化症(ALS)。融合肉瘤(FUS)基因突变是家族性 ALS 的最常见遗传原因之一。携带 FUS 核定位序列突变(P525L)的运动神经元显示出几种细胞器的轴突运输受损,这表明定位错误的细胞质 FUS 可能直接干扰运输机制。为了验证这一假说,我们研究了 FUS 对驱动蛋白-1运动性的影响。使用改良的微管滑行运动测定法,在涂有驱动蛋白-1运动蛋白的表面上进行实验,我们发现重组野生型和 P525L FUS 变体,以及源自表达这些 FUS 变体的同基因 ALS 患者特异性诱导多能干细胞衍生的脊髓运动神经元的裂解物,均不会显著影响滑行速度。因此,我们得出结论,在 ALS 发病机制中,FUS(P525L)对轴突运输的最初负面影响是间接的,需要额外的因素或机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30fb/7957795/27267afbd251/ijms-22-02422-g001.jpg

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