Scott Daniel, Layfield Robert, Oldham Neil J
School of Chemistry, University of Nottingham, Nottingham, UK.
School of Life Sciences, Queen's Medical Centre, University of Nottingham, Nottingham, UK.
Proteomics. 2015 Aug;15(16):2835-41. doi: 10.1002/pmic.201400457. Epub 2015 Mar 9.
Many proteins exhibit conformation flexibility as part of their biological function, whether through the presence of a series of well-defined states or by the existence of intrinsic disorder. Ion mobility spectrometry, in combination with MS (IM-MS), offers a rapid and sensitive means of probing ensembles of protein structures through measurement of gas-phase collisional cross sections. We have applied IM-MS analysis to the multidomain deubiquitinating enzyme ubiquitin specific protease 5 (USP5), which is believed to exhibit significant conformational flexibility. Native ESI-MS measurement of the 94-kDa USP5 revealed two distinct charge-state distributions: M + 17H to M + 21H and M + 24H to M + 29H. The collisional cross sections of these ions revealed clear groupings of 52 ± 4 nm(2) for the lower charges and 66 ± 6 nm(2) for the higher charges. Molecular dynamics simulation of a compact form of USP5, based on a crystal structure, produced structures of 53-54 nm(2) following 2 ns in the gas phase, while simulation of an extended form (based on small-angle X-ray scattering data) led to structures of 64 nm(2). These data demonstrate that IM-MS is a valuable tool in studying proteins with different discrete conformational states.
许多蛋白质作为其生物学功能的一部分表现出构象灵活性,无论是通过一系列明确状态的存在还是内在无序的存在。离子淌度光谱法与质谱联用(IM-MS),通过测量气相碰撞截面,提供了一种快速且灵敏的探测蛋白质结构集合的方法。我们已将IM-MS分析应用于多结构域去泛素化酶泛素特异性蛋白酶5(USP5),据信该酶表现出显著的构象灵活性。对94 kDa的USP5进行的原生电喷雾电离质谱(ESI-MS)测量揭示了两种不同的电荷态分布:M + 17H至M + 21H以及M + 24H至M + 29H。这些离子的碰撞截面显示,较低电荷的离子明显分组为52 ± 4 nm²,较高电荷的离子为66 ± 6 nm²。基于晶体结构对紧凑形式的USP5进行分子动力学模拟,在气相中2纳秒后产生的结构为53 - 54 nm²,而对扩展形式(基于小角X射线散射数据)的模拟则导致结构为64 nm²。这些数据表明,IM-MS是研究具有不同离散构象状态蛋白质的有价值工具。