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Like polarity ion/ion reactions enable the investigation of specific metal interactions in nucleic acids and their non-covalent assemblies

机译:像极性离子/离子反应一样可以研究核酸及其非共价组装物中的特定金属相互作用

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摘要

A rare example of ion/ion reaction between species of like polarity was shown to take place during the transfer of metal cations from nucleic acid substrates to chelating agents in the gas phase. Gaseous anionic reactants were generated from separate solutions of analyte and chelator by using a dual nanospray setup. The respective multiply-charged ions shared the same path and were allowed to react for a predetermined interval in an rf-only hexapole before high-resolution analysis by Fourier transform ion cyclotron resonance (FTICR) mass spectrometry. Efficient transfer of sodium and magnesium ions was readily observed with significant reduction of the non-specific adducts that are typically associated with decreased sensitivity and resolution in the analysis of nucleic acid samples. Metal cations were abstracted from the initial analyte without being replaced by protons, in a process that was clearly dependent on the concentration of chelator in the auxiliary emitter and on the time spent by the reactants in the hexapole element. A survey of the properties of selected anionic chelators showed that their known affinity for a target cation in solution was more critical than their maximum anionic charge in determining the outcome of the transfer process. The analysis of selected assemblies requiring divalent cations to preserve their structural integrity and functional properties demonstrated that ion/ion reactions were clearly capable of discriminating between non-specific interactions and specific coordination based on transfer susceptibility. These examples demonstrated that the ability to selectively eliminate non-specific adducts in the gas phase, after the desolvation process is complete, offers a unique opportunity for studying specific metal binding in biological systems without resorting to separation procedures that may adversely affect the position of binding equilibria in solution and disrupt the assemblies under investigation.
机译:已显示在极性相同的物种之间发生离子/离子反应的罕见示例,该过程是在金属阳离子从核酸底物向气相螯合剂的转移过程中发生的。气态阴离子反应物是通过使用双纳米喷雾装置从分析物和螯合剂的单独溶液中产生的。在通过傅立叶变换离子回旋共振(FTICR)质谱进行高分辨率分析之前,各个带多重电荷的离子共享相同的路径,并允许它们在仅rf的六极杆中反应预定的时间间隔。钠和镁离子的有效转移很容易观察到,非特异性加合物的显着减少通常与核酸样品分析中灵敏度和分离度的降低有关。金属阳离子是从初始分析物中提取出来的,而没有被质子取代,这一过程显然取决于辅助发射体中螯合剂的浓度以及六极元素中反应物所花费的时间。对选定的阴离子螯合剂的性能进行的调查表明,在确定转移过程的结果时,它们对溶液中目标阳离子的已知亲和力比其最大阴离子电荷更为关键。对需要二价阳离子以保留其结构完整性和功能特性的所选组件的分析表明,离子/离子反应显然能够根据转移敏感性区分非特异性相互作用和特异性配位。这些例子表明,在去溶剂化过程完成后,选择性去除气相中非特异性加合物的能力为研究生物系统中的特定金属结合提供了独特的机会,而无需诉诸可能会对结合位置产生不利影响的分离程序解决方案中的平衡并破坏正在研究的程序集。

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