首页> 外文期刊>Analytical Chemistry >SEQUENCE-SPECIFIC FRAGMENTATION GENERATED BY MATRIX-ASSISTED LASER DESORPTION IONIZATION IN A QUADRUPOLE ION TRAP REFLECTRON TIME-OF-FLIGHT DEVICE
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SEQUENCE-SPECIFIC FRAGMENTATION GENERATED BY MATRIX-ASSISTED LASER DESORPTION IONIZATION IN A QUADRUPOLE ION TRAP REFLECTRON TIME-OF-FLIGHT DEVICE

机译:四极杆离子阱反射电子飞行时间装置中矩阵辅助激光解吸电离产生的序列特定片段

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Sequence-specific fragmentation for structural analysis has been generated by activation of ions via matrix-assisted laser desorption/ionization (MALDI) in an ion trap storage/reflectron time-of flight device (IT/reTOF). The key to this work is that ion decay can be induced by MALDI activation but requires an extended period of time to occur in large peptides. This extended decay period, which may be in excess of 20 ms, is provided in these experiments using the long storage times of the ion trap device. The ions are stored until decay is complete and then rapidly pulsed into a reflectron TOF for analysis. Since the ions decay within the trap, they ultimately appear as stable ions in the reTOF rather than as metastable decay peaks. The ion fragmentation was found to depend strongly on laser power and the rf voltage placed on the ring electrode of the trap. The fragmentation obtained was shown to be similar to but different from that observed in FAB-low-energy CAD. In particular, enhanced fragmentation was obtained in the lower mass range and large species could be more easily fragmented than with FAB-low-energy CAD. The types of fragmentation for several target peptides are discussed.
机译:通过在离子阱存储/反射电子飞行时间装置(IT / reTOF)中通过基质辅助激光解吸/电离(MALDI)激活离子来生成用于结构分析的序列特异性片段化。这项工作的关键在于,MALDI激活可以诱导离子衰减,但需要较长的时间才能在大分子肽中发生。在这些实验中,使用离子阱装置的较长存储时间提供了可能超过20毫秒的延长衰减时间。离子将被存储,直到衰减完全,然后将其快速脉冲到反射器TOF中进行分析。由于离子在阱中衰减,因此它们最终在reTOF中显示为稳定离子,而不是亚稳态衰减峰。发现离子碎裂在很大程度上取决于激光功率和阱阱环形电极上的射频电压。已显示获得的碎片与FAB低能CAD中观察到的碎片相似但不同。特别是,在较低的质量范围内可获得增强的碎片,与FAB-低能CAD相比,大的物种更容易碎片。讨论了几种靶肽的片段化类型。

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