Riba-Garcia Isabel, Giles Kevin, Bateman Robert H, Gaskell Simon J
Michael Barber Centre for Mass Spectrometry, School of Chemistry and Manchester Interdisciplinary Biocentre, University of Manchester, Manchester, UK.
J Am Soc Mass Spectrom. 2008 Apr;19(4):609-13. doi: 10.1016/j.jasms.2008.01.005. Epub 2008 Jan 31.
Tandem mass spectrometry (MS/MS) of peptides plays a key role in the field of proteomics, and an understanding of the fragmentation mechanisms involved is vital for data interpretation. Not all the fragment ions observed by low-energy collision-induced dissociation of protonated peptides are readily explained by the generally accepted structures for a- and b-ions. The possibility of a macrocyclic structure for b-type ions has been recently proposed. In this study, we have undertaken investigations of linear protonated YAGFL-NH(2), N-acetylated-YAGFL-NH(2), and cyclo-(YAGFL) peptides and their fragments using a combination of ion mobility (IM) separation and mass spectrometry. The use of IM in this work both gives insight into relative structural forms of the ion species and crucial separation of isobaric species. Our study provides compelling evidence for the formation of a stable macrocyclic structure for the b(5) ion generated by fragmentation of protonated linear YAGFL-NH(2). Additionally we demonstrate that the a(4) ion fragment of protonated YAGFL-NH(2) has at least two structures; one of which is attributable to a macrocyclic structure on the basis of its subsequent fragmentation. More generally, this work emphasizes the value of combined IM-MS/MS in probing the detailed fragmentation mechanisms of peptide ions, and illustrates the use of combined ion mobility/collisional activation/mass spectrometry analysis in achieving an effective enhancement of the resolution of the mobility separator.
肽段的串联质谱(MS/MS)在蛋白质组学领域起着关键作用,理解其中涉及的碎裂机制对于数据解读至关重要。并非所有通过质子化肽段的低能碰撞诱导解离所观察到的碎片离子都能轻易地用公认的a离子和b离子结构来解释。最近有人提出了b型离子具有大环结构的可能性。在本研究中,我们结合离子淌度(IM)分离和质谱技术,对线性质子化的YAGFL-NH₂、N-乙酰化-YAGFL-NH₂和环(YAGFL)肽段及其碎片进行了研究。在这项工作中使用IM,既能深入了解离子物种的相对结构形式,又能实现对同量异位物种的关键分离。我们的研究为质子化线性YAGFL-NH₂碎裂产生的b₅离子形成稳定的大环结构提供了有力证据。此外,我们证明质子化YAGFL-NH₂的a₄离子碎片至少有两种结构;其中一种基于其后续碎裂可归因于大环结构。更普遍地说,这项工作强调了联用IM-MS/MS在探究肽离子详细碎裂机制方面的价值,并展示了联用离子淌度/碰撞活化/质谱分析在有效提高淌度分离器分辨率方面的应用。