Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43212, USA.
Analyst. 2017 Jun 12;142(12):2152-2160. doi: 10.1039/c7an00362e.
A new reconfigurable contained-electrospray (ES) ion source is described that can be operated in three unique modes (Types I, II and III) and was applied to control the charge state of proteins for subsequent online characterization by mass spectrometry. Using this device, proteins prepared in 100% water were highly charged after exposure to hydrochloric acid vapor. For myoglobin, the shift to a higher charge state occurred faster than the heme cofactor could escape the unfolding protein. This effect reflected in the detection of highly charged holo-myoglobin intermediates (+26), which suggests the modification process occurred on a millisecond time scale (Type I mode). By introducing a cavity in the contained-ES emitter (Type II mode), increased protein denaturation was observed where only apo-myoglobin ions were detected. A similar increase in the charge effect was observed for less pH sensitive proteins such as ubiquitin and cytochrome c. In a third type of experiment, acidified aqueous-based droplets containing unfolded proteins were briefly exposed to aqueous ammonium acetate/triethylammonium acetate solution mixtures to increase the droplet pH and to induce protein folding during electrospray ionization. Charge-state distributions showed protein folding occurred, including the appearance of charged reduced species that were not observed when sprayed in pure water. The three operational modes of contained-electrospray allow online modification of an analyte during charge droplet formation using both vapor and non-volatile liquid reagents, without a direct addition of the modifying reagent to the analyte solution.
一种新型的可重构的密闭式电喷雾(ES)离子源,可在三种独特的模式(类型 I、II 和 III)下运行,并应用于控制蛋白质的荷质比,以便随后通过质谱进行在线表征。使用该装置,在暴露于盐酸蒸气后,在 100%水中制备的蛋白质可高度带电。对于肌红蛋白,向更高的荷质比转变的速度快于血红素辅基逃离展开的蛋白质。这种效应反映在高度带电的全肌红蛋白中间体(+26)的检测中,这表明修饰过程发生在毫秒级时间尺度(类型 I 模式)。通过在密闭式 ES 发射器中引入一个腔(类型 II 模式),观察到蛋白质变性增加,仅检测到脱辅基肌红蛋白离子。对于 pH 敏感性较低的蛋白质,如泛素和细胞色素 c,观察到类似的电荷效应增加。在第三种实验类型中,短暂地将含有展开蛋白质的酸化水基液滴暴露于含水的乙酸铵/三乙铵乙酸盐溶液混合物中,以增加液滴 pH 值并在电喷雾电离过程中诱导蛋白质折叠。荷质比分布表明发生了蛋白质折叠,包括带电还原物种的出现,而在纯水中喷雾时则未观察到这些物种。密闭式电喷雾的三种操作模式允许在带电液滴形成过程中在线使用蒸汽和非挥发性液体试剂对分析物进行修饰,而无需将修饰试剂直接添加到分析物溶液中。