Department of Pharmaceutical Sciences, University of Maryland, Baltimore, Maryland 21201, United States.
J Am Soc Mass Spectrom. 2020 Jul 1;31(7):1372-1379. doi: 10.1021/jasms.0c00014. Epub 2020 Mar 16.
Fast photochemical oxidation of proteins (FPOP), a hydroxyl radical-based protein footprinting method, coupled to mass spectrometry has been extensively used to study protein structure and protein-protein interactions . This method utilizes hydroxyl radicals to oxidatively modify solvent-accessible amino acids and has recently been demonstrated to modify proteins within live cells (IC-FPOP) and . Here, we have expanded the application of IC-FPOP into a variety of commonly used cell lines to verify the applicability of the method across various cellular systems. IC-FPOP was able to successfully modify proteins in five different cell lines (Vero, HEK 293T, CHO, MCF-10A, and MCF-7). To increase the number of oxidatively modified proteins identified, we have also employed the use of offline high pH reversed-phase liquid chromatography (RPLC) followed by concatenation and online low-pH RPLC. The coupling of IC-FPOP to 2D-LC MS/MS resulted in a 1.7-fold increase in total identifications of oxidatively modified proteins, which expanded the dynamic range of the method. This work demonstrates the efficacy of using IC-FPOP to study protein-protein interactions in cells.
快速光化学氧化蛋白质(FPOP)是一种基于羟基自由基的蛋白质足迹分析方法,与质谱联用,广泛用于研究蛋白质结构和蛋白质-蛋白质相互作用。该方法利用羟基自由基氧化修饰可及溶剂的氨基酸,并已被证明可修饰活细胞内的蛋白质(IC-FPOP)和。在这里,我们将 IC-FPOP 的应用扩展到多种常用细胞系,以验证该方法在各种细胞系统中的适用性。IC-FPOP 能够成功地修饰五种不同细胞系(Vero、HEK 293T、CHO、MCF-10A 和 MCF-7)中的蛋白质。为了增加鉴定出的氧化修饰蛋白数量,我们还采用离线高 pH 反相液相色谱(RPLC),然后串联和在线低 pH RPLC。IC-FPOP 与 2D-LC MS/MS 的联用使氧化修饰蛋白的总鉴定数增加了 1.7 倍,扩大了该方法的动态范围。这项工作证明了使用 IC-FPOP 研究细胞中蛋白质-蛋白质相互作用的有效性。