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一种用于高通量蛋白质组学的自动化高性能毛细管液相色谱-傅里叶变换离子回旋共振质谱仪。

An automated high performance capillary liquid chromatography-Fourier transform ion cyclotron resonance mass spectrometer for high-throughput proteomics.

作者信息

Belov Mikhail E, Anderson Gordon A, Wingerd Mark A, Udseth Harold R, Tang Keqi, Prior David C, Swanson Kenneth R, Buschbach Michael A, Strittmatter Eric F, Moore Ronald J, Smith Richard D

机构信息

Biological Sciences Division and Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

J Am Soc Mass Spectrom. 2004 Feb;15(2):212-32. doi: 10.1016/j.jasms.2003.09.008.

Abstract

We describe a fully automated high performance liquid chromatography 9.4 tesla Fourier transform ion resonance cyclotron (FTICR) mass spectrometer system designed for proteomics research. A synergistic suite of ion introduction and manipulation technologies were developed and integrated as a high-performance front-end to a commercial Bruker Daltonics FTICR instrument. The developments incorporated included a dual-ESI-emitter ion source; a dual-channel electrodynamic ion funnel; tandem quadrupoles for collisional cooling and focusing, ion selection, and ion accumulation, and served to significantly improve the sensitivity, dynamic range, and mass measurement accuracy of the mass spectrometer. In addition, a novel technique for accumulating ions in the ICR cell was developed that improved both resolution and mass measurement accuracy. A new calibration methodology is also described where calibrant ions are introduced and controlled via a separate channel of the dual-channel ion funnel, allowing calibrant species to be introduced to sample spectra on a real-time basis, if needed. We also report on overall instrument automation developments that facilitate high-throughput and unattended operation. These included an automated version of the previously reported very high resolution, high pressure reversed phase gradient capillary liquid chromatography (LC) system as the separations component. A commercial autosampler was integrated to facilitate 24 h/day operation. Unattended operation of the instrument revealed exceptional overall performance: Reproducibility (1-5% deviation in uncorrected elution times), repeatability (<20% deviation in detected abundances for more abundant peptides from the same aliquot analyzed a few weeks apart), and robustness (high-throughput operation for 5 months without significant downtime). When combined with modulated-ion-energy gated trapping, the dynamic calibration of FTICR mass spectra provided decreased mass measurement errors for peptide identifications in conjunction with high resolution capillary LC separations over a dynamic range of peptide peak intensities for each spectrum of 10(3), and >10(5) for peptide abundances in the overall separation.

摘要

我们描述了一种为蛋白质组学研究设计的全自动高效液相色谱 - 9.4特斯拉傅里叶变换离子回旋共振(FTICR)质谱仪系统。开发并集成了一套协同的离子引入和操控技术套件,作为商业布鲁克道尔顿公司FTICR仪器的高性能前端。所纳入的开发内容包括双电喷雾发射极离子源;双通道电动离子漏斗;用于碰撞冷却和聚焦、离子选择以及离子积累的串联四极杆,显著提高了质谱仪的灵敏度、动态范围和质量测量精度。此外,还开发了一种在ICR池中积累离子的新技术,提高了分辨率和质量测量精度。还描述了一种新的校准方法,其中校准离子通过双通道离子漏斗的单独通道引入和控制,从而在需要时能够将校准物质实时引入样品光谱中。我们还报告了有助于高通量和无人值守操作的整体仪器自动化进展。这些进展包括将先前报道的超高分辨率、高压反相梯度毛细管液相色谱(LC)系统的自动化版本作为分离组件。集成了商业自动进样器以实现每天24小时运行。仪器的无人值守操作显示出卓越的整体性能:重现性(未校正洗脱时间偏差1 - 5%)、重复性(相隔几周分析的同一等分试样中较丰富肽段的检测丰度偏差<20%)以及稳健性(5个月的高通量运行且无显著停机时间)。当与调制离子能量门控捕获相结合时,FTICR质谱的动态校准在每个光谱10³的肽峰强度动态范围内以及整体分离中肽丰度>10⁵的情况下,结合高分辨率毛细管LC分离,减少了肽鉴定中的质量测量误差。

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