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Implementing In-Cell Fast Photochemical Oxidation of Proteins in a Platform Incubator with a Movable XY Stage

机译:用可移动XY阶段在平台培养箱中实施蛋白质的细胞快速光化学氧化

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摘要

Fast photochemical oxidation of proteins (FPOP) is a protein footprinting technique that is being increasingly used in MS-based proteomics. FPOP is utilized to study protein-protein interactions, protein-ligand interactions, and protein conformational dynamics. This method has recently been extended to protein labeling in live cells (IC-FPOP), allowing the study of protein conformations in the complex cellular environment. Traditionally, IC-FPOP has been executed using a single cell flow system, in which hydrodynamic focusing drives cells along in a single file line, keeping the cells from clumping and thus ensuring equal exposure to the laser irradiation required for photochemical oxidation. Here, we introduce a novel platform that allows IC-FPOP to occur in a sterile incubation system complete with a mobile stage for XY movement, peristaltic pumps equipped with perfusion lines for chemical transport, and mirrors for laser beam guidance. This new system, called Platform Incubator with movable XY stage (PIXY), also utilizes software enabling automated communication between equipment and execution of the entire system. Further, comparison with a standard IC-FPOP flow system results reveal that this platform can successfully be used in lieu of the flow system while also decreasing the time to complete analysis of a single sample.
机译:蛋白质(FPOP)的快速光化学氧化是一种蛋白质足迹技术,越来越多地用于基于MS的蛋白质组学。 FPOP用于研究蛋白质 - 蛋白质相互作用,蛋白质 - 配体相互作用和蛋白质构象动态。该方法最近已经扩展到活细胞(IC-FPOP)中的蛋白质标记,从而允许研究复杂细胞环境中的蛋白质符合。传统上,使用单个细胞流系统执行IC-FPOP,其中流体动力学聚焦在单个文件线中驱动细胞,使细胞免于块,从而确保光化学氧化所需的激光照射等同暴露。在这里,我们介绍了一种新颖的平台,允许IC-FPOP在无菌孵化系统中进行,该系统具有用于XY运动的移动阶段,蠕动泵配备有用于化学传输的灌注线,以及用于激光束引导的镜子。这款新系统称为Platform孵化器,具有可移动XY级(Pixy),还利用了设备在设备和整个系统的执行之间自动通信的软件。此外,与标准的IC-FPOP流系统结果的比较表明,该平台可以成功地用于代替流动系统,同时还降低了对单个样本的完全分析的时间。

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