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基于 LTQ-Orbitrap 质谱仪的 shotgun 蛋白质组学实验中质谱参数对肽段和蛋白质鉴定率的影响。

Effect of mass spectrometric parameters on peptide and protein identification rates for shotgun proteomic experiments on an LTQ-orbitrap mass analyzer.

机构信息

Proteome Exploration Laboratory, Division of Biology, Beckman Institute, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Proteomics. 2012 Jan;12(1):21-31. doi: 10.1002/pmic.201100464. Epub 2011 Nov 29.

Abstract

The success of a shotgun proteomic experiment relies heavily on the performance and optimization of both the LC and the MS systems. Despite this, little consideration has, so far, been given to the importance of evaluating and optimizing the MS instrument settings during data-dependent acquisition mode. Moreover, during data-dependent acquisition, the users have to decide and choose among various MS parameters and settings, making a successful analysis even more challenging. We have systematically investigated and evaluated the effect of enabling and disabling the preview mode for FTMS scan, the number of microscans per MS/MS scan, the number of MS/MS events, the maximum ion injection time for MS/MS, and the automatic gain control target value for MS and MS/MS events on protein and peptide identification rates on an LTQ-Orbitrap using the Saccharomyces cerevisiae proteome. Our investigations aimed to assess the significance of each MS parameter to improve proteome analysis and coverage. We observed that higher identification rates were obtained at lower ion injection times i.e. 50-150 ms, by performing one microscan and 12-15 MS/MS events. In terms of ion population, optimal automatic gain control target values were at 5×10(5) -1×10(6) ions for MS and 3×10(3) -1×10(4) ions for MS/MS. The preview mode scan had a minimal effect on identification rates. Using optimized MS settings, we identified 1038 (±2.3%) protein groups with a minimum of two peptide identifications and an estimated false discovery rate of ∼1% at both peptide and protein level in a 160-min LC-MS/MS analysis.

摘要

shotgun 蛋白质组学实验的成功在很大程度上依赖于 LC 和 MS 系统的性能和优化。尽管如此,到目前为止,人们很少考虑到在数据依赖采集模式下评估和优化 MS 仪器设置的重要性。此外,在数据依赖采集期间,用户必须在各种 MS 参数和设置之间做出决定和选择,这使得成功的分析更加具有挑战性。我们已经系统地研究和评估了在 FTMS 扫描中启用和禁用预览模式、每个 MS/MS 扫描的微扫描次数、MS/MS 事件的数量、MS/MS 的最大离子注入时间以及 MS 和 MS/MS 事件的自动增益控制目标值对使用 Saccharomyces cerevisiae 蛋白质组的 LTQ-Orbitrap 上的蛋白质和肽鉴定率的影响。我们的研究旨在评估每个 MS 参数对改善蛋白质组分析和覆盖度的重要性。我们观察到,通过执行一个微扫描和 12-15 个 MS/MS 事件,较低的离子注入时间(即 50-150 ms)可以获得更高的鉴定率。在离子数量方面,最佳的自动增益控制目标值为 MS 为 5×10(5)-1×10(6) 个离子,MS/MS 为 3×10(3)-1×10(4) 个离子。预览模式扫描对鉴定率的影响最小。使用优化的 MS 设置,我们在 160 分钟的 LC-MS/MS 分析中鉴定了 1038 个(±2.3%)蛋白质组,每个蛋白质组至少有两个肽鉴定,肽和蛋白质水平的估计假发现率约为 1%。

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