Himanish Basu, Lai Ding, Gulcin Pekkurnaz, Michelle Cronin, Thomas L. Schwarz
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Abstract
The movement of intracellular cargo, such as transcripts, proteins, and organelles, is fundamental to cellular function. Neurons, due to their long axons and dendrites, are particularly dependent on proper intracellular trafficking and vulnerable to defects in the movement of intracellular cargo that are noted in neurodegenerative and neurodevelopmental disorders. Accurate quantification of intracellular transport is therefore needed for studying the mechanisms of cargo trafficking, the influence of mutations, and the effects of potentially therapeutic pharmaceuticals. In this article, we introduce an algorithm called “Kymolyzer.” The algorithm can quantify intracellular trafficking along a defined path, such as that formed by the aligned microtubules of axons and dendrites. Kymolyzer works as a semi-autonomous kymography software application. It constructs and analyzes kymographs to measure the movement and distribution of fluorescently tagged objects along a user-defined path. The algorithm can be used under a wide variety of experimental conditions and can extract a diverse array of motility parameters describing intracellular movement, including time spent in motion, percentage of objects in motion, percentage of objects that are stationary, and velocities of motile objects. This article serves as a user manual describing the design of Kymolyzer, providing a stepwise protocol for its use and illustrating its functions with common examples. © 2020 Wiley Periodicals LLC
Basic Protocol : Kymolyzer, a semi-autonomous kymography tool to analyze intracellular motility
Kymolyzer,一种分析细胞内运动的半自主的Kymography工具
细胞内货物的运动,如转录本、蛋白质和细胞器,是细胞功能的基础。神经元,由于其长轴突和树突,特别依赖于适当的细胞内运输,并且容易受到在神经退行性和神经发育障碍中注意到的细胞内货物运动缺陷的影响。因此,为了研究货物运输的机制、突变的影响和潜在治疗药物的作用,需要精确量化细胞内运输。在本文中,我们将介绍一种名为Kymolyzer的算法。该算法可以量化沿特定路径的细胞内运输,例如轴突和树突排列的微管形成的运输。Kymolyzer是一款半自主的kymography软件。它构建和分析心电图,以测量沿用户定义的路径荧光标记的对象的运动和分布。该算法可以在各种实验条件下使用,并可以提取描述细胞内运动的各种运动参数,包括运动时间、运动物体的百分比、静止物体的百分比和运动物体的速度。本文作为用户手册,描述Kymolyzer的设计,为其使用提供逐步协议,并通过常见示例说明其功能。©2020 Wiley期刊LLCBasic协议:Kymolyzer,一种半自主的分析细胞内运动的血气记录工具
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