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Pitfalls in Protein Quantitation Using Acid-Catalyzed O~(18) Labeling: Hydrolysis-Driven Deamidation

机译:使用酸催化的O〜(18)标记进行蛋白质定量分析的陷阱:水解驱动的脱酰胺作用

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摘要

Proteolysis combined with O~(18) labeling emerged recently as a powerful tool for quantitation of proteins for which suitable internal standards cannot be produced using molecular biology methods. Several recent reports suggested that acid-catalyzed O~(18) labeling may be superior to the commonly accepted enzymatic protocol, as it may allow more significant spacing between the isotopic clusters of labeled and unlabeled peptides, thereby eliminating signal interference and enhancing the quality of quantitation. However, careful examination of this procedure reveals that the results of protein quantitation assisted by acid-catalyzed O~(18) labeling are highly peptide-dependent. The inconsistency was found to be caused by deamidation of Asn, Gln, and carbamidomethylated Cys residues during prolonged exposure of the proteolytic fragments to the acidic environment of the labeling reaction, which translates into a loss in signal for these peptides. Taking deamidation into account leads to a significant improvement in the consistency of quantitation across a range of different proteolytic fragments.
机译:结合O〜(18)标记的蛋白水解作为一种定量蛋白质的强大工具,最近已经出现,蛋白质无法使用分子生物学方法生成合适的内标。近期的一些报道表明,酸催化的O〜(18)标记可能优于公认的酶促方案,因为它可以在标记的和未标记的肽的同位素簇之间留出更大的间距,从而消除信号干扰并提高蛋白质的质量。定量。但是,仔细检查此程序后发现,由酸催化的O〜(18)标记辅助的蛋白质定量结果高度依赖肽。发现不一致的原因是蛋白水解片段长时间暴露于标记反应的酸性环境中时,Asn,Gln和尿素甲基化的Cys残基脱酰胺引起的,这转化为这些肽信号的损失。考虑到脱酰胺作用,可在一系列不同蛋白水解片段之间实现定量一致性的显着改善。

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