Aebersold R, Bures E J, Namchuk M, Goghari M H, Shushan B, Covey T C
Biomedical Research Centre, University of British Columbia, Vancouver, Canada.
Protein Sci. 1992 Apr;1(4):494-503. doi: 10.1002/pro.5560010404.
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.
我们报告了一种用于蛋白质序列分析的新型试剂的设计、化学合成、结构及功能表征。该试剂通过埃德曼降解法进行蛋白质序列分析,能产生可通过离子蒸发质谱法以高灵敏度快速检测的氨基酸衍生物。我们证明,试剂3-[4'(乙烯基-N,N,N-三甲基氨基)苯基]-2-异硫氰酸酯化学性质稳定,在手动或自动序列分析中通常遇到的条件下,其偶联及环化/裂解产率与化学序列分析中的标准试剂异硫氰酸苯酯相当。用该试剂生成的氨基酸衍生物可通过离子蒸发质谱法在亚飞摩尔灵敏度水平下以每分钟一个样品的速度进行检测。此外,可根据衍生物的质量对其进行鉴定,从而能够快速且高度灵敏地确定修饰氨基酸的分子性质。具有酸性、碱性、极性或疏水性侧链的氨基酸衍生物均可在相当的灵敏度下被重复检测到。该试剂的极性性质要求在自动序列分析之前对多肽进行共价固定。这种用于自动序列分析的试剂有可能克服当前使用的化学测序方法在灵敏度、速度以及表征修饰氨基酸残基能力方面所固有的局限性。