Identification of phosphoserine and phosphothreonine as cysteic acid and β-methylcysteic acid residues in peptides by tandem mass spectrometric sequencing

被引:30
作者
Li, W
Boykins, RA
Backlund, PS
Wang, GY
Chen, HC
机构
[1] NICHHD, Endocrinol & Reprod Res Branch, Lab Cell & Mol Biophys, NIH, Bethesda, MD 20892 USA
[2] US FDA, Ctr Biol Evaluat & Res, Biophys Lab, Div Bacterial Parasit & Allergen Prod, Bethesda, MD 20892 USA
关键词
D O I
10.1021/ac020259v
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Tandem mass spectrometry has long been an intrinsic tool to determine phosphorylation sites in proteins. However, loss of the phosphate moiety from both phosphoserine and phosphothreonine residues in low-energy collision-induced dissociation is a common phenomenon, which makes identification of P-Ser and P-Thr residues complicated. A method for direct sequencing of the Ser and Thr phosphorylation sites by ESI tandem mass spectrometry followingbeta-elimination/sulfite addition to convert -HPO4 to SO3 has been studied. Five model phosphopeptides, including three synthetic P-Ser-, P-Thr-, or P-Ser- and P-Thr-containing peptides; a protein kinases C-phosphorylated peptide; and a phosphopeptide derived from,beta-casein trypsin digests were modified and then sequenced using an ESI-quadrupole ion trap mass spectrometer. Following incubation of P-Ser- or P-Thr-containing peptides with Na2SO3/NaOH, 90% P-Ser and 80% P-Thr was converted to cysteic acid and beta-methylcysteic acid, respectively, as revealed by amino acid analysis. The conversion can be carried out at I muM concentration of the peptide. Both cysteic acid and beta-methylcysteic acid residues in the sequence were shown to be stable and easily identifiable under general conditions for tandem mass spectrometric sequencing applicable to common peptides.
引用
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页码:5701 / 5710
页数:10
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