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引用次数: 0
摘要
神经元线粒体具有很高的钙缓冲能力和 ATP 生产能力,是维持突触活动的重要细胞器。在神经元中,线粒体在运动蛋白、驱动蛋白和动力蛋白的介导下沿着微管运输,将线粒体运往突触。轴突运输中断是神经退行性疾病的早期致病事件,越来越多的证据表明,轴突运输中断可能先于神经退行性疾病发生。在这里,我们描述了一种用荧光蛋白标记线粒体的方法,以监测线粒体在 hiPSC 衍生的中刺神经元样细胞中沿着轴突的运动。我们还提供了分化 hiPSC 的详细方案,该方案可产生电生理学上成熟的 GABA 能纹状体神经元,且胶质细胞数量较少。
Imaging Mitochondrial Axonal Transport in Human Induced Pluripotent Stem Cell-Derived Neurons.
Neuronal mitochondria are essential organelles to maintain synaptic activity due to the high calcium buffering capacity and ATP production. In neurons, mitochondria transport occurs along the microtubules mediated by motor proteins, kinesins and dynein, to drive mitochondria toward the synapses. Disruption of axonal transport is an early pathogenic event in neurodegenerative disorders and growing evidence supports that it may precede neurodegeneration. Here, we describe a method to label mitochondria with fluorescent proteins to monitor their movement along the axons in hiPSC-derived medium spiny neuron-like cells. We also included a detailed protocol for differentiation of hiPSC that produces electrophysiologically mature GABAergic striatal neurons with low amount of glial population.
期刊介绍:
For over 20 years, biological scientists have come to rely on the research protocols and methodologies in the critically acclaimed Methods in Molecular Biology series. The series was the first to introduce the step-by-step protocols approach that has become the standard in all biomedical protocol publishing. Each protocol is provided in readily-reproducible step-by-step fashion, opening with an introductory overview, a list of the materials and reagents needed to complete the experiment, and followed by a detailed procedure that is supported with a helpful notes section offering tips and tricks of the trade as well as troubleshooting advice.