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Comparison of the effects of ionization mechanism, analyte concentration, and ion 'cool-times' on the internal energies of peptide ions produced by electrospray and atmospheric pressure matrix-assisted laser desorption ionization

机译:比较电离机理,分析物浓度和离子“冷却时间”对电喷雾和常压基质辅助激光解吸电离产生的肽离子内能的影响

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摘要

The propensities of a series of peptide ions produced by both electrospray and atmospheric pressure matrix assisted laser desorption ionization (AP-MALDI) to fragment in an ion trap mass spectrometer under various conditions were studied in detail by measuring the extent of fragmentation of precursor ions by collision induced dissociation (CID) as a function of applied resonance excitation RF voltage. For the most basic peptides, the energy required to fragment MH+ ions generated by electrospray exceeded that required to fragment equivalent AP-MALDI ions under identical instrumental conditions; the reverse was observed for a peptide incorporating no basic residues, while peptides of intermediate basicity showed little difference between the ionization methods. This correlation between peptide basicity and the difference in the energy required to induce fragmentation of MH+ ions generated by AP-MALDI and electrospray is attributed primarily to a trend in the internal energies of the ions generated by AP-MALDI (the greater the difference in gas-phase basicities between the matrix and the analyte the greater the internal energy of the analyte ions produced). Furthermore the internal energies of ions produced by AP-MALDI, but not the equivalent ions formed by electrospray, were observed to decrease with decreasing analyte concentration. We attribute this finding to the cooling effect of endothermic dissociation of analyte ion/matrix molecule clusters following the matrix assisted laser desorption step. Time-resolved analyses (measurement of extent of fragmentation of precursor ions by CID as a function of pre-CID "cool times") revealed that cooling periods in excess of 250 ms were required to achieve internal energy equilibrium through cooling collisions with the helium buffer gas. Furthermore, these analyses demonstrated that, even after these extended cooling times, equivalent ions formed by the two ionization techniques showed different propensities to fragment. We conclude that the two different ionization techniques produce ion populations that may differ in their three-dimensional structure. © 2005 American Society for Mass Spectrometry.
机译:通过在不同条件下通过离子阱质谱仪测量前驱物离子的裂解程度,详细研究了电喷雾和大气压基质辅助激光解吸电离(AP-MALDI)产生的一系列肽离子在各种条件下在离子阱质谱仪中裂解的倾向。碰撞诱导解离(CID)作为施加的共振激发RF电压的函数。对于最碱性的肽,在相同的仪器条件下,裂解通过电喷雾产生的MH +离子所需的能量超过了裂解等效的AP-MALDI离子所需的能量。对于没有碱性残基的肽,则观察到相反的结果,而具有中等碱性的肽在电离方法之间显示出很小的差异。肽碱性和诱导AP-MALDI产生的MH +离子碎裂和电喷雾所需能量的差异之间的这种相关性主要归因于AP-MALDI产生的离子的内部能量趋势(气体差异越大基质和分析物之间的两相碱度越大,产生的分析物离子的内部能量就越大。此外,观察到随着分析物浓度的降低,AP-MALDI产生的离子的内能下降,但电喷雾形成的等价离子却没有下降。我们将此发现归因于基质辅助激光解吸步骤后,被分析物离子/基质分子簇的吸热解离的冷却作用。时间分辨分析(根据CID之前的“冷却时间”确定CID分解前体离子的程度)表明,通过与氦气缓冲液的冷却碰撞,需要超过250 ms的冷却时间才能实现内部能量平衡加油站。此外,这些分析表明,即使经过延长的冷却时间,通过两种电离技术形成的等效离子也显示出不同的碎片倾向。我们得出的结论是,两种不同的电离技术会产生在其三维结构上可能不同的离子种群。 ©2005美国质谱学会。

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