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An image-based computational method for characterizing whole-cell scale spatiotemporal dynamics of intracellular transport

机译:基于图像的表征细胞内转运全细胞尺度时空动态的计算方法

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Intracellular transport is the process of distributing and collecting materials, often packaged in different forms of cargoes, to fulfill changing structural and functional needs within the cell. Although the molecular machinery for intracellular transport has largely been identified, how this process is regulated globally in space and time remains unclear. In a step towards answering this question, we developed an image-based computational method for characterizing spatiotemporal dynamics of intracellular transport at the whole-cell scale to separate signals of moving and stationary cargoes. Specifically, we extended an algorithm that we developed previously for removing background fluorescence of static images. This separation allows us to extract from time-lapse images the global pattern of cargo movement without single particle tracking of individual cargoes. Based on this separation, we characterized the spatiotemporal dynamics of intracellular transport in terms of the spatial localization of stationary cargoes and the spatiotemporal patterns of cargo movement, respectively. We first tested and validated our methods using synthetic images. We then used our methods to analyze time-lapse images of Lamp1 transport and found different global patterns of transport behavior.
机译:细胞内运输是分配和收集通常包装在不同形式货物中的材料,以满足细胞内不断变化的结构和功能需求的过程。尽管已经基本确定了用于细胞内运输的分子机制,但是如何在空间和时间上全局调节该过程仍不清楚。在回答这个问题的步骤中,我们开发了一种基于图像的计算方法,用于表征全细胞范围内的细胞内运输时空动态,以分离移动和固定货物的信号。具体来说,我们扩展了先前开发的用于去除静态图像背景荧光的算法。这种分离使我们能够从延时图像中提取出货物移动的整体模式,而无需对单个货物进行单个粒子跟踪。基于这种分离,我们分别根据固定货物的空间定位和货物移动的时空模式表征了细胞内运输的时空动态。我们首先使用合成图像测试和验证了我们的方法。然后,我们使用我们的方法来分析Lamp1运输的延时图像,并发现不同的运输行为全局模式。

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