Hale J E, Beidler D E, Jue R A
Protein Engineering Department, Hybritech Incorporated, San Diego, California 92196.
Anal Biochem. 1994 Jan;216(1):61-6. doi: 10.1006/abio.1994.1008.
A new versatile reagent, 3-bromopropylamine, for the quantitative analysis of cysteine residues in proteins and peptides is reported. When added to amino acid standards, the 3-bromopropylamine derivative of cysteine, S-3-aminopropylcysteine, elutes in a unique position on four different amino acid analysis systems without modification to their standard gradients. Optimized conditions for the complete alkylation of cysteines in proteins with 3-bromopropylamine are described. The S-3-aminopropylcysteine is stable to standard acid hydrolysis conditions used for amino acid analysis. Cysteine values are within 10% of the predicted value in the amino acid analysis of acid hydrolysates of known proteins based on quantitation with S-3-aminopropylcysteine. No evidence of alkylation of other amino acids by 3-bromopropylamine is apparent from the amino acid analysis of proteins alkylated under the optimal conditions. These results expand the application of 3-bromopropylamine to include quantitation of cysteine by amino acid analysis as well as the previously reported identification of cysteines by protein sequencing.
报道了一种用于蛋白质和肽中半胱氨酸残基定量分析的新型多功能试剂3-溴丙胺。当将其添加到氨基酸标准品中时,半胱氨酸的3-溴丙胺衍生物S-3-氨丙基半胱氨酸在四种不同的氨基酸分析系统上均在一个独特的位置洗脱,而无需改变其标准梯度。文中描述了用3-溴丙胺对蛋白质中的半胱氨酸进行完全烷基化的优化条件。S-3-氨丙基半胱氨酸对用于氨基酸分析的标准酸水解条件稳定。在基于S-3-氨丙基半胱氨酸定量的已知蛋白质酸水解产物的氨基酸分析中,半胱氨酸值在预测值的10%以内。从在最佳条件下烷基化的蛋白质的氨基酸分析中,未发现3-溴丙胺对其他氨基酸进行烷基化的明显证据。这些结果扩展了3-溴丙胺的应用范围,包括通过氨基酸分析对半胱氨酸进行定量以及之前报道的通过蛋白质测序鉴定半胱氨酸。