Bioprocess Development, MRL, Merck & Co., Inc., 2000 Galloping Hill Road, Kenilworth, NJ, 07033, USA.
J Am Soc Mass Spectrom. 2019 Mar;30(3):519-528. doi: 10.1007/s13361-018-2103-y. Epub 2018 Nov 26.
Direct characterization of disulfide linkages in proteins by mass spectrometry has been challenging. Here, we report analysis of disulfide linkages in insulin variant, endothelin 3, and relaxin 2 by in-source dissociation (ISD) during LC-MS. A duplet insulin peptide from Glu-C digestion that contains peptides p1 and p2 (from chains A and B, respectively) was selected as a model peptide. This duplet peptide has an inter-chain disulfide bond between p1 and p2, and an intra-chain disulfide bond in p1. To compare the gas-phase fragmentation, it was subjected to ISD MS and MS/MS methods, including collision-induced dissociation (CID) and electron transfer dissociation (ETD). The pattern and efficiency of peptide backbone and disulfide cleavage varied with these dissociation methods. ETD, CID, and ISD were able to generate single backbone, double backbone, and triple (double backbone and single disulfide bond) cleavages in this model peptide, respectively. Specifically, CID did not cleave disulfide bonds and ETD was able to only cleave the inter-chain disulfide bond at low efficiency, limiting their usage in this disulfide analysis. In contrast, ISD was able to cleave the intra-chain disulfide bond in addition to peptide backbone, creating multiple fragment ions that allow accurate assignment of both intra- and inter-chain disulfide linkages. ISD was also successfully applied to determine double disulfide linkages in endothelin 3 and relaxin 2 peptides. This study contributes to the fundamental understanding of disulfide bond cleavages in different gas-phase fragmentations and provides an efficient cleavage strategy for identification of disulfide bonds in proteins by ISD ESI-MS. Graphical Abstract.
通过质谱法直接鉴定蛋白质中的二硫键一直具有挑战性。在这里,我们报告了通过 LC-MS 中的源内解离(ISD)分析胰岛素变体、内皮素 3 和松弛素 2 中二硫键的情况。从 Glu-C 消化中选择含有肽 p1 和 p2(分别来自 A 链和 B 链)的二聚胰岛素肽作为模型肽。该二聚肽在 p1 和 p2 之间具有链间二硫键,并且在 p1 中具有链内二硫键。为了比较气相碎片,它经历了 ISD MS 和 MS/MS 方法,包括碰撞诱导解离(CID)和电子转移解离(ETD)。肽骨架和二硫键断裂的模式和效率因这些解离方法而异。ETD、CID 和 ISD 分别能够在该模型肽中产生单骨架、双骨架和三(双骨架和单二硫键)断裂。具体而言,CID 不能切割二硫键,而 ETD 仅能够以低效率切割链间二硫键,限制了它们在这种二硫键分析中的使用。相比之下,ISD 除了肽骨架之外还能够切割链内二硫键,产生多个片段离子,从而能够准确分配链内和链间的二硫键。ISD 还成功地应用于确定内皮素 3 和松弛素 2 肽中的双二硫键。这项研究有助于深入了解不同气相碎裂中二硫键的断裂,并为通过 ISD ESI-MS 鉴定蛋白质中二硫键提供了一种有效的断裂策略。