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Electron Capture Dissociation in a Branched Radio-Frequency Ion Trap

机译:分支的射频离子阱中的电子俘获解离

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We have developed a high-throughput electron capture dissociation (ECD) device coupled to a quadrupole time-of-flight mass spectrometer using novel branched radio frequency ion trap architecture. With this device, a low-energy electron beam can be injected orthogonally into the analytical ion beam with independent control of both the ion and electron beams. While ions and electrons can interact in a "flow-through" mode, we observed a large enhancement in ECD efficiency by introducing a short ion trapping period at the region of ion and electron beam intersection. This simultaneous trapping mode still provides up to five ECD spectra per second while operating in an information-dependent acquisition workflow. Coupled to liquid chromatography (LC), this LC-ECD workflow provides good sequence coverage for both trypsin and Lys C digests of bovine serum albumin, providing ECD spectra for doubly charged precursor ions with very good efficiency.
机译:我们已经开发了一种高通量电子捕获解离(ECD)装置,该装置使用新颖的分支式射频离子阱结构与四极杆飞行时间质谱仪耦合。利用该装置,可以在独立控制离子和电子束的情况下将低能电子束正交注入分析离子束。尽管离子和电子可以“流通”模式相互作用,但我们通过在离子与电子束交叉点的区域引入较短的离子捕获周期,观察到了ECD效率的大幅提高。在以信息为基础的采集工作流程中运行时,这种同时捕获模式仍可每秒提供多达五个ECD光谱。结合液相色谱(LC),该LC-ECD工作流程为牛血清白蛋白的胰蛋白酶和Lys C消化物提供了良好的序列覆盖范围,从而为双电荷前体离子提供了非常高效的ECD光谱。

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