Department of BioMolecular Sciences, University of Mississippi, Oxford, Mississippi 38677, United States.
Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, California 92093, United States.
J Am Soc Mass Spectrom. 2023 Dec 6;34(12):2864-2867. doi: 10.1021/jasms.3c00323. Epub 2023 Nov 16.
Hydroxyl radical protein footprinting (HRPF) is a mass-spectrometry-based method for studying protein structures, interactions, conformations, and folding. This method is based on the irreversible labeling of solvent-exposed amino acid side chains by hydroxyl radicals. While catalase is commonly used as a quencher after the labeling of a protein by the hydroxyl radicals to efficiently remove the remaining hydrogen peroxide, it has some disadvantages. Catalase quenching adds a relatively high amount of protein to the sample, limiting the sensitivity of the method due to dynamic range issues and causing significant issues when dealing with more complex samples. We evaluated dimethylthiourea (DMTU) as a replacement for catalase in the quenching HRPF reactions. We observed that DMTU is highly effective at quenching HRPF oxidation. DMTU does not cause the background protein issues that catalase does, resulting in an increased number of protein identifications from complex mixtures. We recommend the replacement of catalase quenching with DMTU for all HRPF experiments.
羟基自由基蛋白质足迹法(HRPF)是一种基于质谱的方法,用于研究蛋白质结构、相互作用、构象和折叠。该方法基于羟基自由基对溶剂暴露的氨基酸侧链的不可逆标记。虽然过氧化氢酶通常用作羟基自由基标记蛋白质后的淬灭剂,以有效地去除剩余的过氧化氢,但它存在一些缺点。过氧化氢酶淬灭会向样品中添加相对大量的蛋白质,由于动态范围问题,这会限制方法的灵敏度,并在处理更复杂的样品时引起严重问题。我们评估了二甲基硫脲(DMTU)作为过氧化氢酶在淬灭 HRPF 反应中的替代品。我们观察到 DMTU 非常有效地淬灭 HRPF 氧化。DMTU 不会像过氧化氢酶那样引起背景蛋白质问题,从而增加了从复杂混合物中鉴定的蛋白质数量。我们建议在所有 HRPF 实验中用 DMTU 替代过氧化氢酶淬灭。