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Coupling ion mobility separations, collisional activation techniques, and multiple stages of MS for analysis of complex peptide mixtures

机译:耦合离子淌度分离,碰撞活化技术和多级质谱分析,用于分析复杂的肽混合物

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摘要

An ion trap/ion mobility/quadrupole/collision ceff/time-of-flight mass spectrometer that incorporates a differentially pumped orifice-skimmer cone region at the back of the drift tube has been developed for the analysis of peptide mixtures. The combined approach allows a variety of strategies to be employed for collisionally activating ions, and fragments can be monitored by subsequent stages of mass spectrometry in a parallel fashion, as described previously (Anal. Chem. 2000, 72, 2737). Here, we describe the overall experimental approach in detail. Applications involving different aspects of the initial mobility separation and various collisional activation and parallel sequencing strategies are illustrated by examining several simple peptide mixtures and a mixture of tryptic peptides from beta-casein. Detection limits associated with various, experimental configurations and the utility for analysis of complex systems are discussed. [References: 90]
机译:已经开发出了一种离子阱/离子迁移率/四极杆/碰撞效率/飞行时间质谱仪,该质谱仪在漂移管的背面结合了一个差动泵孔-撇渣锥区域,用于分析肽混合物。组合的方法允许采用多种策略来碰撞活化离子,并且可以通过质谱的后续阶段以平行方式监测片段,如先前所述(Anal。Chem。2000,72,2737)。在这里,我们将详细描述整体实验方法。通过检查几种简单的肽混合物和来自β-酪蛋白的胰蛋白酶肽混合物,可以说明涉及初始迁移率分离,各种碰撞活化和平行测序策略不同方面的应用。讨论了与各种实验配置相关的检测限以及用于分析复杂系统的实用程序。 [参考:90]

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