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Protected Amine Labels: A Versatile Molecular Scaffold for Multiplexed Nominal Mass and Sub-Da Isotopologue Quantitative Proteomic Reagents

机译:受保护的胺标记:用于标称质量多重混合和亚Da同位素同位素定量蛋白质组学试剂的多功能分子支架。

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摘要

We assemble a versatile molecular scaffold from simple building blocks to create binary and multiplexed stable isotope reagents for quantitative mass spectrometry. Termed Protected Amine Labels (PAL), these reagents offer multiple analytical figures of merit including, (i) robust targeting of peptide N-termini and lysyl side chains, (ii) optimal mass spectrometry ionization efficiency through regeneration of primary amines on labeled peptides, (iii) an amino acid-based mass tag that incorporates heavy isotopes of carbon, nitrogen, and oxygen to ensure matched physicochemical and MS/MS fragmentation behavior among labeled peptides, and (iv) a molecularly efficient architecture, in which the majority of hetero-atom centers can be used to synthesize a variety of nominal mass and sub-Da isotopologue stable isotope reagents. We demonstrate the performance of these reagents in well-established strategies whereby up to four channels of peptide isotopomers, each separated by 4 Da are quantified in MS-level scans with accuracies comparable to current commercial reagents. In addition we utilize the PAL scaffold to create isotopologue reagents in which labeled peptide analogs differ in mass based on the binding energy in carbon and nitrogen nuclei, thereby allowing quantification based on MS or MS/MS spectra. We demonstrate accurate quantification for reagents that support 6-plex labeling and propose extension of this scheme to 9-channels based on a similar PAL scaffold. Finally we provide exemplar data that extends the application of isotopologe-based quantification reagents to medium resolution, quadrupole time-of-flight mass spectrometers.
机译:我们从简单的结构单元组装了通用的分子支架,以创建用于定量质谱的二元和多元稳定同位素试剂。这些试剂被称为保护性胺标记(PAL),具有多种分析价值,包括:(i)稳定靶向肽N-末端和赖氨酰侧链;(ii)通过再生标记肽上伯胺的最佳质谱电离效率; (iii)基于氨基酸的质量标签,其中包含碳,氮和氧的重同位素,以确保标记的肽之间具有匹配的理化和MS / MS片段化行为;以及(iv)分子有效的结构,其中大多数杂种原子中心可用于合成各种标称质量和亚Da同位素同位素稳定同位素试剂。我们在完善的策略中证明了这些试剂的性能,从而在MS级扫描中量化了多达4个肽异位异构体通道,每个通道被4 Da隔开,其精确度可与目前的商业试剂媲美。另外,我们利用PAL支架来创建同位素标记试剂,其中标记的肽类似物的质量基于碳和氮核中的结合能而有所不同,从而可以基于MS或MS / MS光谱进行定量。我们证明了支持6重标记的试剂的准确定量,并基于类似的PAL支架,提议将该方案扩展至9个通道。最后,我们提供了示例数据,将基于同位素的定量试剂的应用扩展到了中分辨率四极杆飞行时间质谱仪。

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