首页> 外文期刊>Journal of proteome research >Chemical Penetration Enhancers Increase Hydrogen Peroxide Uptake in C. elegans for In Vivo Fast Photochemical Oxidation of Proteins
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Chemical Penetration Enhancers Increase Hydrogen Peroxide Uptake in C. elegans for In Vivo Fast Photochemical Oxidation of Proteins

机译:化学渗透增强剂增加了C.胶带的过氧化氢摄取为体内快速光化学氧化蛋白质

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摘要

Fast photochemical oxidation of proteins (FPOP) is a hydroxyl radical protein footprinting method that covalently labels solvent-accessible amino acids by photolysis of hydrogen peroxide. Recently, we expanded the use of FPOP for in vivo (IV-FPOP) covalent labeling in C. elegans. In initial IV-FPOP studies, 545 proteins were oxidatively modified in all body systems within the worm. Here, with the use of chemical penetration enhancers (CPEs), we increased the number of modified proteins as well as the number of modifications per protein to gain more structural information. CPEs aid in the delivery of hydrogen peroxide inside C. elegans by disturbing the highly ordered lipid bilayer of the worm cuticle without affecting worm viability. IV-FPOP experiments performed using the CPE azone showed an increase in oxidatively modified proteins and peptides. This increase correlated with greater hydrogen peroxide uptake by C. elegans quantified using a chemical fluorophore demonstrating the efficacy of using CPEs with IV-FPOP. Mass spectrometry proteomics data are available via ProteomeXchange with identifier PXD019290.
机译:蛋白质(FPOP)的快速光化学氧化是羟基自由基蛋白质足迹方法,通过过氧化氢光解共价标记溶剂可接近的氨基酸。最近,我们扩大了在C.杆状杆菌中的体内(IV-FPOP)共价标记的FPOP的使用。在初始IV-FPOP研究中,545个蛋白质在蠕虫内的所有体系中氧化修饰。这里,通过使用化学渗透增强剂(CPE),我们增加了改性蛋白质的数量以及每种蛋白质的修饰数以获得更多结构信息。 CPES通过扰乱蠕虫角质层的高度有序的脂质双层而不影响蠕虫活力,帮助在C.杆状内的过氧化氢化物中的氢过氧化氢。使用CPE Azone进行的IV-FPOP实验显示氧化改性蛋白质和肽的增加。这种增加与使用化学荧光团定量的C.杆状杆菌的大氧化氢摄取相关,证明使用CPE与IV-FPOP的功效。质谱蛋白质组学数据可通过Proteomexchange获得标识符PXD019290。

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