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一种新型混合电喷雾傅里叶变换质谱仪:设计与性能特征

A new hybrid electrospray Fourier transform mass spectrometer: design and performance characteristics.

作者信息

O'connor Peter B, Pittman Jason L, Thomson Bruce A, Budnik Bogdan A, Cournoyer Jason C, Jebanathirajah Judith, Lin Cheng, Moyer Susanne, Zhao Cheng

机构信息

Mass Spectrometry Resource, Department of Biochemistry, Boston University School of Medicine, 715 Albany St. R806, Boston, MA 02118-2526, USA.

出版信息

Rapid Commun Mass Spectrom. 2006;20(2):259-66. doi: 10.1002/rcm.2307.

Abstract

A new hybrid electrospray quadrupole Fourier transform mass spectrometry (FTMS) instrument design is shown and characterized. This instrument involves coupling an electrospray source and mass-resolving quadrupole, ion accumulation, and collision cell linear ion trap system developed by MDS Sciex with a home-built ion guide and ion cyclotron resonance (ICR) cell. The iterative progression of this design is shown. The final design involves a set of hexapole ion guides to transfer the ions from the accumulation/collision trap through the magnetic field gradient and into the cell. These hexapole ion guides are separated by a thin gate valve and two conduction limits to maintain the required <10(-9) mbar vacuum for FTICR. Low-attomole detection limits for a pure peptide are shown, 220 000 resolving power in broadband mode and 820 000 resolving power in narrow-band mode are demonstrated, and mass accuracy in the <2 ppm range is routinely available provided the signal is abundant, cleanly resolved, and internally calibrated. This instrument design provides high experimental flexibility, allowing Q2 CAD, SORI-CAD, IRMPD, and ECD experiments with selected ion accumulation as well as experiments such as nozzle skimmer dissociation. Initial top-down mass spectrometry experiments on a protein is shown using ECD.

摘要

展示并表征了一种新型的混合电喷雾四极杆傅里叶变换质谱(FTMS)仪器设计。该仪器包括将MDS Sciex开发的电喷雾源、质量分辨四极杆、离子积累和碰撞池线性离子阱系统与自制的离子导向器和离子回旋共振(ICR)池相耦合。展示了该设计的迭代过程。最终设计包括一组六极杆离子导向器,用于将离子从积累/碰撞阱通过磁场梯度传输到池中。这些六极杆离子导向器由一个薄门阀和两个传导极限隔开,以维持FTICR所需的<10^(-9) 毫巴真空度。展示了纯肽的低阿托摩尔检测限,证明了宽带模式下220000的分辨率和窄带模式下820000的分辨率,并且只要信号丰富、清晰分辨且进行了内部校准,通常可实现<2 ppm范围内的质量精度。这种仪器设计提供了高度的实验灵活性,允许进行具有选定离子积累的Q2 CAD、SORI-CAD、IRMPD和ECD实验以及诸如喷嘴撇油器解离等实验。展示了使用ECD对一种蛋白质进行的首次自上而下的质谱实验。

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