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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Electron capture dissociation implementation progress in Fourier transform ion cyclotron resonance mass spectrometry
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Electron capture dissociation implementation progress in Fourier transform ion cyclotron resonance mass spectrometry

机译:电子俘获解离在傅里叶变换离子回旋共振质谱中的实现进展

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Successful electron capture dissociation (ECD) Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) applications to peptide and protein structural analysis have been enabled by constant progress in implementation of improved electron injection techniques. The rate of ECD product ion formation has been increased to match the liquid chromatography and capillary electrophoresis timescales, and ECD has been combined with infrared multiphoton dissociation in a single experimental configuration to provide simultaneous irradiation, fast switching between the two techniques, and good spatial overlap between ion, photon, and electron beams. Here we begin by describing advantages and disadvantages of the various existing electron injection techniques for ECD in FT-ICR MS. We next compare multiple-pass and single-pass ECD to provide better understanding of ECD efficiency at low and high negative cathode potentials. We introduce compressed hollow electron beam injection to optimize the overlap of ion, photon, and electron beams in the ICR ion trap. Finally, to overcome significant outgassing during operation of a powerful thermal cathode, we introduce nonthermal electron emitter-based electron injection. We describe the first results obtained with cold cathode ECD, and demonstrate a general way to obtain low-energy electrons in FT-ICR MS by use of multiple-pass ECD.
机译:随着改进的电子注入技术的不断发展,已经成功地将电子捕获解离(ECD)傅里叶变换离子回旋共振质谱(FT-ICR MS)应用到肽和蛋白质结构分析中。增加了ECD产物离子形成的速率,以匹配液相色谱和毛细管电泳时标,并且ECD与红外多光子离解结合在单个实验配置中,以提供同时照射,两种技术之间的快速切换以及良好的空间重叠在离子束,光子束和电子束之间在这里,我们从描述FT-ICR MS中用于ECD的各种现有电子注入技术的优缺点开始。接下来,我们比较多遍和单遍ECD,以更好地了解在低和高负阴极电势下的ECD效率。我们引入压缩空心电子束注入,以优化ICR离子阱中离子束,光子束和电子束的重叠。最后,为了克服在强大的热阴极工作期间产生的大量气体,我们引入了基于非热电子发射器的电子注入方法。我们描述了用冷阴极ECD获得的第一个结果,并演示了通过使用多次通过ECD在FT-ICR MS中获得低能电子的一般方法。

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