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Electron Capture Dissociation in a Digital Ion Trap Mass Spectrometer

机译:数字离子阱质谱仪中的电子俘获解离

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Electron capture dissociation was implemented in a digital ion trap without using any magnetic field to focus the electrons. Since rectangular waveforms are employed in the DIT for both trapping and dipole excitation, electrons can be injected into the trap when the electric field is constant. Following deceleration, electrons reach the precursor ion cloud. The fragment ions produced by interactions with the electron beam are subsequently analyzed by resonant ejection. [Glu~(1)]-Fibrinopeptide B and substance P were used to evaluate the performance of the current design. Fragmentation efficiency of 5.5percent was observed for substance P peptide ions. Additionally, analysis of the monophosphorylated peptide FQ[pS]E-EQQQTEDELQDK shows that in the resulting c- and z-type ions, the phosphate group is retained on the phophoserine residue, providing information on which amino acid residue the modification is located.
机译:电子捕获解离是在数字离子阱中实现的,而无需使用任何磁场来聚焦电子。由于在DIT中采用矩形波形进行陷波和偶极激发,因此当电场恒定时可以将电子注入陷阱中。减速后,电子到达前驱离子云。随后通过共振喷射分析与电子束相互作用产生的碎片离子。 [Glu〜(1)]-纤维蛋白肽B和P物质用于评估当前设计的性能。对于P物质肽离子,观察到5.5%的裂解效率。另外,对单磷酸化肽FQ [pS] E-EQQQTEDELQDK的分析表明,在所得的c型和z型离子中,磷酸基团保留在磷酸丝氨酸残基上,提供了修饰所位于的氨基酸残基的信息。

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