Sawyer Holly A, Marini Joseph T, Stone Earle G, Ruotolo Brandon T, Gillig Kent J, Russell David H
Laboratory for Biological Mass Spectrometry, Department of Chemistry, Texas A&M University, College Station, TX 77843, USA.
J Am Soc Mass Spectrom. 2005 Jun;16(6):893-905. doi: 10.1016/j.jasms.2005.03.002.
Ion mobility-mass spectrometry (IM-MS) data is interpreted as evidence that gas-phase bradykinin fragment 1-5 (BK1-5, RPPGF) M + H ions exist as three distinct structural forms, and the relative abundances of the structural forms depend on the solvent used to prepare the matrix-assisted laser desorption ionization (MALDI) samples. Samples prepared from organic rich solvents (90% methanol/10% water) yield ions having an ion mobility arrival-time distribution (ATD) that is dominated by a single peak; conversely, samples prepared using mostly aqueous solvents (10% methanol/90% water) yield an ATD composed of three distinct peaks. The BK1-5 M + H ions were also studied by gas-phase hydrogen/deuterium (H/D) exchange ion-molecule reactions and this data supports our interpretation of the IM-MS data. Plausible structures for BK1-5 ions were generated by molecular dynamics (MD). Candidate MD-generated structures correlated to measured cross-sections suggest a compact conformer containing a beta-turn whereas a more extended, open form does not contain such an interaction. This study illustrates the importance of intra-molecular interactions in the stabilization of the gas-phase ions, and these results clearly illustrate that solution-phase parameters (i.e., MALDI sample preparation) greatly influence the structures of gas-phase ions.
离子淌度-质谱(IM-MS)数据被解释为气相缓激肽片段1-5(BK1-5,RPPGF)M + H离子以三种不同结构形式存在的证据,且这些结构形式的相对丰度取决于用于制备基质辅助激光解吸电离(MALDI)样品的溶剂。由富有机溶媒(90%甲醇/10%水)制备的样品产生的离子,其离子淌度到达时间分布(ATD)以单峰为主;相反,主要使用水性溶媒(10%甲醇/90%水)制备的样品产生的ATD由三个不同的峰组成。还通过气相氢/氘(H/D)交换离子-分子反应研究了BK1-5 M + H离子,该数据支持我们对IM-MS数据的解释。通过分子动力学(MD)生成了BK1-5离子的合理结构。与测量截面相关的MD生成候选结构表明,一种紧凑构象体含有一个β-转角,而一种更伸展、开放的形式则不含有这种相互作用。本研究说明了分子内相互作用在气相离子稳定中的重要性,这些结果清楚地表明,溶液相参数(即MALDI样品制备)极大地影响气相离子的结构。