Laboratory of Neuroscience, Graduate School of Pharmaceutical Sciences, Hokkaido University; Advanced Prevention and Research Laboratory for Dementia, Graduate School of Pharmaceutical Sciences, Hokkaido University;
Laboratory of Neuroscience, Graduate School of Pharmaceutical Sciences, Hokkaido University; Advanced Prevention and Research Laboratory for Dementia, Graduate School of Pharmaceutical Sciences, Hokkaido University.
J Vis Exp. 2023 Feb 24(192). doi: 10.3791/64999.
Neuronal cells are highly polarized cells that stereotypically harbor several dendrites and an axon. The length of an axon necessitates efficient bidirectional transport by motor proteins. Various reports have suggested that defects in axonal transport are associated with neurodegenerative diseases. Also, the mechanism of the coordination of multiple motor proteins has been an attractive topic. Since the axon has uni-directional microtubules, it is easier to determine which motor proteins are involved in the movement. Therefore, understanding the mechanisms underlying the transport of axonal cargo is crucial for uncovering the molecular mechanism of neurodegenerative diseases and the regulation of motor proteins. Here, we introduce the entire process of axonal transport analysis, including the culturing of mouse primary cortical neurons, transfection of plasmids encoding cargo proteins, and directional and velocity analyses without the effect of pauses. Furthermore, the open-access software "KYMOMAKER" is introduced, which enables the generation of a kymograph to highlight transport traces according to their direction and allow easier visualization of axonal transport.
神经元是高度极化的细胞,通常具有多个树突和一个轴突。轴突的长度需要通过马达蛋白进行有效的双向运输。已有多项报告表明,轴突运输缺陷与神经退行性疾病有关。此外,协调多种马达蛋白的机制一直是一个吸引人的话题。由于轴突具有单方向的微管,因此更容易确定哪些马达蛋白参与了运动。因此,了解轴突货物运输的机制对于揭示神经退行性疾病的分子机制和马达蛋白的调节至关重要。在这里,我们介绍了轴突运输分析的整个过程,包括培养小鼠原代皮质神经元、转染编码货物蛋白的质粒,以及在没有停顿影响的情况下进行方向和速度分析。此外,还介绍了开放获取软件“KYMOMAKER”,它可以生成一个时间轨迹图,根据其方向突出运输轨迹,使轴突运输更容易可视化。