Afiuni-Zadeh Somaieh, Rogers John C, Snovida Sergei I, Bomgarden Ryan D, Griffin Timothy J
Department of Laboratory Medicine and Pathology, University of Minnesota, Minneapolis, MN.
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, MN.
Biotechniques. 2016 Apr 1;60(4):186-8, 190, 192-6. doi: 10.2144/000114402. eCollection 2016 Apr.
Protein carbonylation is a common oxidative stress (OS)-driven post-translational modification (PTM). Proteome-wide carbonylation events can best be characterized using a combination of analytical approaches. Immunoblotting of carbonylated proteins provides data on the extent of modifications within complex samples, as well as a broad comparison of carbonylation profiles between different biological states (e.g., disease versus control), while mass spectrometry (MS)-based analysis provides information on proteins susceptible to carbonylation, as well as the potential for quantitative characterization of specific sites of amino acid modification. Here, we present a novel use for aminoxyTMT, a derivative of the Tandem Mass Tag (TMT) isobaric labeling reagent, which utilizes an aminooxy functional group for covalent labeling of reactive carbonyls in proteins. When coupled with anti-TMT antibody, we demonstrate the use of aminoxyTMT for immunoblot profiling of protein carbonylation in complex mixtures, as well as enrichment of modified peptides from these mixtures. Proof-of-principle experiments also show the amenability of aminoxyTMT-labeled carbonylated peptides enriched from complex mixtures to identification using tandem MS (MS/MS) and database searching, as well as quantitative analysis using TMT-based reporter ion intensity measurements.
蛋白质羰基化是一种常见的由氧化应激(OS)驱动的翻译后修饰(PTM)。蛋白质组范围内的羰基化事件可以通过多种分析方法的组合来最好地进行表征。对羰基化蛋白质进行免疫印迹可提供复杂样品中修饰程度的数据,以及不同生物学状态(如疾病与对照)之间羰基化谱的广泛比较,而基于质谱(MS)的分析则提供了易发生羰基化的蛋白质信息,以及对氨基酸修饰特定位点进行定量表征的潜力。在此,我们展示了氨基氧基TMT(串联质量标签(TMT)等压标记试剂的衍生物)的一种新用途,它利用氨基氧基官能团对蛋白质中的活性羰基进行共价标记。当与抗TMT抗体结合使用时,我们证明了氨基氧基TMT可用于复杂混合物中蛋白质羰基化的免疫印迹分析,以及从这些混合物中富集修饰肽段。原理验证实验还表明,从复杂混合物中富集的氨基氧基TMT标记的羰基化肽段适用于使用串联质谱(MS/MS)和数据库搜索进行鉴定,以及使用基于TMT的报告离子强度测量进行定量分析。