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High-Resolution Quantification of Focal Adhesion Spatiotemporal Dynamics in Living Cells

机译:活细胞中粘着时空动力学的高分辨率定量分析

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摘要

Focal adhesions (FAs) are macromolecular complexes that provide a linkage between the cell and its external environment. In a motile cell, focal adhesions change size and position to govern cell migration, through the dynamic processes of assembly and disassembly. To better understand the dynamic regulation of focal adhesions, we have developed an analysis system for the automated detection, tracking, and data extraction of these structures in living cells. This analysis system was used to quantify the dynamics of fluorescently tagged Paxillin and FAK in NIH 3T3 fibroblasts followed via Total Internal Reflection Fluorescence Microscopy (TIRF). High content time series included the size, shape, intensity, and position of every adhesion present in a living cell. These properties were followed over time, revealing adhesion lifetime and turnover rates, and segregation of properties into distinct zones. As a proof-of-concept, we show how a single point mutation in Paxillin at the Jun-kinase phosphorylation site Serine 178 changes FA size, distribution, and rate of assembly. This study provides a detailed, quantitative picture of FA spatiotemporal dynamics as well as a set of tools and methodologies for advancing our understanding of how focal adhesions are dynamically regulated in living cells. A full, open-source software implementation of this pipeline is provided at http://gomezlab.bme.unc.edu/tools.
机译:粘着斑(FAs)是大分子复合物,可在细胞与其外部环境之间提供联系。在运动细胞中,粘着斑通过组装和拆卸的动态过程改变大小和位置,以控制细胞迁移。为了更好地了解粘着斑的动态调节,我们开发了一种分析系统,用于对活细胞中这些结构进行自动检测,跟踪和数据提取。该分析系统用于定量NIH 3T3成纤维细胞中荧光标记的Paxillin和FAK的动力学,然后通过全内反射荧光显微镜(TIRF)进行定量。高含量的时间序列包括活细胞中每种粘附的大小,形状,强度和位置。这些特性会随时间变化,显示出粘合寿命和周转率,以及将特性隔离到不同的区域。作为概念验证,我们显示了Paxillin在Jun激酶磷酸化位点丝氨酸178上的单点突变如何改变FA的大小,分布和组装速度。这项研究提供了FA时空动力学的详细,定量的图片,以及用于增进我们对活细胞中粘着斑如何动态调节的理解的一组工具和方法。 http://gomezlab.bme.unc.edu/tools提供了该管道的完整的开源软件实现。

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