Michael Barber Centre for Collaborative Mass Spectrometry, Manchester Institute of Biotechnology and Photon Science Institute, University of Manchester, 131 Princess Street, Manchester, M1 7DN, UK.
Dipartimento di Chimica e Tecnologie del Farmaco, Università di Roma "La Sapienza", 00185, Rome, Italy.
J Am Soc Mass Spectrom. 2019 Jan;30(1):24-33. doi: 10.1007/s13361-018-1992-0. Epub 2018 Jun 13.
The initial stages of protein unfolding may reflect the stability of the entire fold and can also reveal which parts of a protein can be perturbed, without restructuring the rest. In this work, we couple UVPD with activated ion mobility mass spectrometry to measure how three model proteins start to unfold. Ubiquitin, cytochrome c and myoglobin ions produced via nESI from salty solutions are subjected to UV irradiation pre-mobility separation; experiments are conducted with a range of source conditions which alter the conformation of the precursor ion as shown by the drift time profiles. For all three proteins, the compact structures result in less fragmentation than more extended structures which emerge following progressive in-source activation. Cleavage sites are found to differ between conformational ensembles, for example, for the dominant charge state of cytochrome c [M + 7H], cleavage at Phe10, Thr19 and Val20 was only observed in activating conditions whilst cleavage at Ala43 is dramatically enhanced. Mapping the photo-cleaved fragments onto crystallographic structures provides insight into the local structural changes that occur as protein unfolding progresses, which is coupled to global restructuring observed in the drift time profiles. Graphical Abstract.
蛋白质展开的初始阶段可能反映整个折叠的稳定性,并且还可以揭示蛋白质的哪些部分可以受到干扰,而不会重新构建其余部分。在这项工作中,我们将 UVPD 与活化离子淌度质谱联用,以测量三种模型蛋白质如何开始展开。通过 nESI 从含盐溶液中产生的泛素、细胞色素 c 和肌红蛋白离子在迁移分离前进行 UV 辐照;实验在一系列改变前体离子构象的源条件下进行,如漂移时间谱所示。对于所有三种蛋白质,与随着源内逐渐活化而出现的更扩展的结构相比,紧凑结构导致的碎片化较少。发现裂解位点在构象集合之间存在差异,例如,对于细胞色素 c [M + 7H]的主要电荷态,仅在活化条件下观察到在 Phe10、Thr19 和 Val20 处的裂解,而在 Ala43 处的裂解则显著增强。将光裂解片段映射到晶体结构上提供了对蛋白质展开过程中发生的局部结构变化的深入了解,这与在漂移时间谱中观察到的全局重构相关联。图表摘要。