Jeanne Dit Fouque Kevin, Afonso Carlos, Zirah Séverine, Hegemann Julian D, Zimmermann Marcel, Marahiel Mohamed A, Rebuffat Sylvie, Lavanant Hélène
Normandie Univ, COBRA, UMR 6014 and FR 3038; Université de Rouen; INSA Rouen; CNRS, IRCOF , 1 Rue Tesnière, 76821 Mont-Saint-Aignan Cedex, France.
Anal Chem. 2015 Jan 20;87(2):1166-72. doi: 10.1021/ac503772n. Epub 2014 Dec 31.
Ion mobility mass spectrometry data were collected on a set of five class II lasso peptides and their branched-cyclic topoisomers prepared in denaturing solvent conditions with and without sulfolane as a supercharging agent. Sulfolane was shown not to affect ion mobility results and to allow the formation of highly charged multiply protonated molecules. Drift time values of low charged multiply protonated molecules were found to be similar for the two peptide topologies, indicating the branched-cyclic peptide to be folded in the gas phase into a conformation as compact as the lasso peptide. Conversely, high charge states enabled a discrimination between lasso and branched-cyclic topoisomers, as the former remained compact in the gas phase while the branched-cyclic topoisomer unfolded. Comparison of the ion mobility mass spectrometry data of the lasso and branched-cyclic peptides for all charge states, including the higher charge states obtained with sulfolane, yielded three trends that allowed differentiation of the lasso form from the branched-cyclic topology: low intensity of highly charged protonated molecules, even with the supercharging agent, low change in collision cross sections with increasing charge state of all multiply protonated molecules, and narrow ion mobility peak widths associated with the coexistence of fewer conformations and possible conformational changes.
在变性溶剂条件下,以有和没有环丁砜作为超荷化剂的方式,制备了一组5种II类套索肽及其支链-环状拓扑异构体,并收集了它们的离子淌度质谱数据。结果表明,环丁砜不影响离子淌度结果,且能使高电荷多质子化分子形成。发现两种肽拓扑结构的低电荷多质子化分子的漂移时间值相似,这表明支链-环状肽在气相中折叠成与套索肽一样紧凑的构象。相反,高电荷态能够区分套索肽和支链-环状拓扑异构体,因为前者在气相中保持紧凑,而支链-环状拓扑异构体则展开。对套索肽和支链-环状肽在所有电荷态下的离子淌度质谱数据进行比较,包括使用环丁砜获得的较高电荷态数据,得出了三个趋势,这些趋势能够区分套索肽形式和支链-环状拓扑结构:即使使用超荷化剂,高电荷质子化分子的强度也较低;所有多质子化分子的碰撞截面随电荷态增加的变化较小;与较少构象共存和可能的构象变化相关的离子淌度峰宽较窄。