Adams Christopher M, Zubarev Roman A
Laboratory for Biological and Medical Mass Spectrometry, Uppsala University, Sweden.
Anal Chem. 2005 Jul 15;77(14):4571-80. doi: 10.1021/ac0503963.
Tandem mass spectrometry (MS/MS) utilizing both electron capture dissociation (ECD) and collisionally activated dissociation (CAD) was used to develop a qualitative and quantitative analytical method for chiral analysis of individual amino acid residues in polypeptides. ECD produced a more distinct chiral recognition than CAD, which is attributed to the smaller degree of vibrational excitation in ECD. Several peptide and protein model systems were used in this study, including the smallest known protein, tryptophan cage, a lactoferrin peptide, and the biologically relevant opioid peptide, dermorphin. An adaptation of the kinetic method was used to quantify the degree of separation between fragmentation patterns of stereoisomeric peptides as a function of fragment ion abundances. The obtained calibration scale for relative abundances of d-amino acids in diastereomeric peptide mixtures was accurate to 1% for ECD and to 3-5% for CAD. It was found that separation and quantification of stereoisomers could be advantageously performed by nanoflow reversed-phase liquid chromatography, with the objective of on-line MS/MS limited to stereoisomer identification. This technique shows promise for the analysis of chiral substitution in peptides and proteins, broadening the application area for tandem mass spectrometry.
利用电子捕获解离(ECD)和碰撞激活解离(CAD)的串联质谱(MS/MS)被用于开发一种定性和定量分析方法,用于多肽中单个氨基酸残基的手性分析。ECD比CAD产生更明显的手性识别,这归因于ECD中较小程度的振动激发。本研究使用了几种肽和蛋白质模型系统,包括已知最小的蛋白质色氨酸笼、乳铁蛋白肽以及具有生物学相关性的阿片样肽皮啡肽。采用动力学方法的一种变体来量化立体异构肽片段模式之间的分离程度,作为碎片离子丰度的函数。对于非对映体肽混合物中d-氨基酸的相对丰度,所获得的校准标度在ECD下精确到1%,在CAD下精确到3 - 5%。结果发现,立体异构体的分离和定量可以通过纳流反相液相色谱有利地进行,在线MS/MS的目的仅限于立体异构体鉴定。该技术在肽和蛋白质手性取代分析方面显示出前景,拓宽了串联质谱的应用领域。