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轨道阱傅里叶变换质谱中离子聚并的观察。

Observation of ion coalescence in Orbitrap Fourier transform mass spectrometry.

机构信息

Institute for Energy Problems of Chemical Physics, Russian Academy of Sciences, 119334 Moscow, Russia.

出版信息

Rapid Commun Mass Spectrom. 2012 Aug 15;26(15):1711-7. doi: 10.1002/rcm.6289.

Abstract

RATIONALE

Similar to other mass spectrometric technologies based on ion trapping in a spatially restricted area, the performance of Orbitrap Fourier transform mass spectrometry (FTMS) is affected by the interaction between the trapped ion clouds. One of the effects associated with Coulombic interaction inside the ion trap is the ion cloud coupling, known in ion cyclotron resonance (ICR) FTMS as coalescence, or a phase-locking phenomenon. Nevertheless, the direct observation of ion coalescence has not been reported for Orbitrap FTMS yet.

METHODS

We have performed experiments on ion coalescence with a pair of isobaric peptides in the state-of-the-art hybrid linear ion trap high-field compact Orbitrap Elite FT mass spectrometer using both standard and advanced signal processing modes.

RESULTS

For the instrument configuration employed in this work we found that ion coalescence occurs when two singly charged peptides with the mass difference of 22 mDa and molecular weight of about 1060 Da have the total abundance of at least 7.5*10(4) charges.

CONCLUSIONS

We experimentally demonstrate the existence of the ion coalescence phenomenon in Orbitrap FTMS for peptides for a wide range of total trapped ion population. Using the applicable modeling of the phase-locking threshold we estimate the effect of ion coalescence on the performance of Orbitrap FTMS.

摘要

原理

与基于在空间受限区域中捕获离子的其他质谱技术类似,轨道阱傅里叶变换质谱(FTMS)的性能受到捕获离子云之间相互作用的影响。离子阱内库仑相互作用的影响之一是离子云耦合,在离子回旋共振(ICR)FTMS 中称为合并,或锁相现象。然而,尚未有关于轨道阱 FTMS 中离子合并的直接观察的报道。

方法

我们使用最先进的混合线性离子阱高场紧凑轨道阱 Elite FT 质谱仪,在标准和高级信号处理模式下,对具有相同质量数的一对肽的离子合并进行了实验。

结果

对于本工作中使用的仪器配置,我们发现当两个质量差为 22 mDa 且分子量约为 1060 Da 的单电荷肽的总丰度至少为 7.5*10(4)电荷时,会发生离子合并。

结论

我们实验证明了轨道阱 FTMS 中离子合并现象的存在,适用于广泛的总捕获离子群体。使用适用的锁相阈值模型,我们估计了离子合并对轨道阱 FTMS 性能的影响。

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