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Design synthesis and characterization of a protein sequencing reagent yielding amino acid derivatives with enhanced detectability by mass spectrometry.

机译:蛋白质测序试剂的设计合成和表征可产生通过质谱检测可增强的氨基酸衍生物。

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摘要

We report the design, chemical synthesis, and structural and functional characterization of a novel reagent for protein sequence analysis by the Edman degradation, yielding amino acid derivatives rapidly detectable at high sensitivity by ion-evaporation mass spectrometry. We demonstrate that the reagent 3-[4'(ethylene-N,N,N-trimethylamino)phenyl]-2-isothiocyanate is chemically stable and shows coupling and cyclization/cleavage yields comparable to phenylisothiocyanate, the standard reagent in chemical sequence analysis, under conditions typically encountered in manual or automated sequence analysis. Amino acid derivatives generated with this reagent were detectable by ion-evaporation mass spectrometry at the subfemtomole sensitivity level at a pace of one sample per minute. Furthermore, derivatives were identified by their mass, thus permitting the rapid and highly sensitive determination of the molecular nature of modified amino acids. Derivatives of amino acids with acidic, basic, polar, or hydrophobic side chains were reproducibly detectable at comparable sensitivities. The polar nature of the reagent required covalent immobilization of polypeptides prior to automated sequence analysis. This reagent, used in automated sequence analysis, has the potential for overcoming the limitations in sensitivity, speed, and the ability to characterize modified amino acid residues inherent in the chemical sequencing methods that are currently used.
机译:我们报告了设计,化学合成,蛋白质序列分析的新型试剂的结构和功能表征的埃德曼降解,产生氨基酸衍生物可以通过离子蒸发质谱法在高灵敏度下快速检测到。我们证明了试剂3- [4'(乙烯-N,N,N-三甲基氨基)苯基] -2-异硫氰酸酯是化学稳定的,并且显示出与苯基异硫氰酸酯(化学序列分析中的标准试剂)相当的偶联和环化/裂解产率,在手动或自动序列分析中通常遇到的条件下。用该试剂产生的氨基酸衍生物可以通过离子蒸发质谱法在亚甲孔灵敏度下以每分钟一个样品的速度进行检测。此外,通过衍生物的质量鉴定衍生物,从而可以快速,高度灵敏地测定修饰氨基酸的分子性质。带有酸性,碱性,极性或疏水性侧链的氨基酸衍生物在相当的灵敏度下可重复检测。试剂的极性要求在自动序列分析之前将多肽共价固定。在自动序列分析中使用的这种试剂具有克服灵敏度,速度以及表征目前使用的化学测序方法中固有的修饰氨基酸残基的能力的潜力。

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