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首页> 外文期刊>Journal of mass spectrometry: JMS >Dipolar DC induced collisional activation of non-dissociated electron-transfer products
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Dipolar DC induced collisional activation of non-dissociated electron-transfer products

机译:Dipolar DC诱导非解离电子转移产物的碰撞活化

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摘要

The application of electron transfer and dipolar direct current induced collisional activation (ET-DDC) for enhanced sequence coverage of peptide/protein cations is described. A DDC potential is applied across one pair of opposing rods in the high-pressure collision cell of a hybrid quadrupole/time-of-flight tandem mass spectrometer (QqTOF) to induce collisional activation, in conjunction with electron transfer reactions. As a broadband technique, DDC can be employed for the simultaneous collisional activation of all the first-generation charge-reduced precursor ions (eg, electron transfer no-dissociation or ETnoD products) from electron transfer reactions over a relatively broad mass-to-charge range. A systematic study of ET-DDC induced collision activation on peptide/protein cations revealed an increase in the variety (and abundances) of sequence informative fragment ions, mainly c- and z-type fragment ions, relative to products derived directly via electron transfer dissociation (ETD). Compared with ETD, which has low dissociation efficiency for low-charge-state precursor ions, ET-DDC also showed marked improvement, providing a sequence coverage of 80% to 85% for all the charge states of ubiquitin. Overall, this method provides a simple means for the broadband collisional activation of ETnoD ions in the same collision cell in which they are generated for improved structural characterization of polypeptide and protein cations subjected to ETD.
机译:描述了电子转移和偶极直流诱导的碰撞活化(ET-DDC)的应用,用于增强肽/蛋白阳离子的序列覆盖。 DDC电位在混合四极/飞行时间串联质谱仪(QQTOF)的高压碰撞单元中的一对相对棒中施加,以诱导碰撞激活,与电子转移反应结合。作为宽带技术,DDC可用于在相对较宽的质量 - 电荷上与电子转移反应同时激活所有第一代电荷减少的前体离子(例如,电子转移无解离或ETNOD产品)的碰撞激活范围。对肽/蛋白质阳离子的ET-DDC诱导碰撞活化的系统研究表明,相对于直接通过电子转移解离的产品,序列信息片段离子离子离子离子的多样性(和丰度)的种类(和丰裕)增加(ETD)。与ETD相比,低电荷 - 状态前体离子的解离效率低,ET-DDC还显示出显着的改善,为泛素的所有电荷状态提供80%至85%的序列覆盖率。总的来说,该方法提供了具有相同碰撞细胞中Etnod离子的宽带碰撞激活的简单手段,其中产生了改善对其进行ETD的多肽和蛋白质阳离子的结构表征。

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