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High-throughput single-cell analysis for the proteomic dynamics study of the yeast osmotic stress response

机译:高通量单细胞分析用于蛋白质组动力学研究酵母的渗透应激反应

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摘要

Motorized fluorescence microscopy combined with high-throughput microfluidic chips is a powerful method to obtain information about different biological processes in cell biology studies. Generally, to observe different strains under different environments, high-throughput microfluidic chips require complex preparatory work. In this study, we designed a novel and easily operated high-throughput microfluidic system to observe 96 different GFP-tagged yeast strains in one switchable culture condition or 24 different GFP-tagged yeast strains in four parallel switchable culture conditions. A multi-pipette is the only additional equipment required for high-throughput patterning of cells in the chip. Only eight connections are needed to control 96 conditions. Using these devices, the proteomic dynamics of the yeast stress response pathway were carefully studied based on single-cell data. A new method to characterize the proteomic dynamics using a single cell’s data is proposed and compared to previous methods, and the new technique should be useful for studying underlying control networks. Our method provides an easy and systematic way to study signaling pathways at the single-cell level.
机译:电动荧光显微镜与高通量微流控芯片相结合是一种获得有关细胞生物学研究中不同生物学过程信息的强大方法。通常,要观察不同环境下的不同应变,高通量微流控芯片需要复杂的准备工作。在这项研究中,我们设计了一个新颖且易于操作的高通量微流体系统,以在一个可切换培养条件下观察96种不同的GFP标签酵母菌株,或在四个平行可切换培养条件下观察24个不同的GFP标签酵母菌株。多移液器是芯片中细胞高通量构图所需的唯一附加设备。仅需要八个连接即可控制96个条件。使用这些设备,基于单细胞数据仔细研究了酵母应激反应途径的蛋白质组动力学。提出了一种使用单个细胞的数据表征蛋白质组动力学的新方法,并将其与以前的方法进行了比较,该新技术对于研究基础控制网络应该很有用。我们的方法提供了一种简单而系统的方法来研究单细胞水平的信号通路。

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