Bonneil Eric, Pfammatter Sibylle, Thibault Pierre
Institute for Research in Immunology and Cancer, Université de Montréal, C.P. 6128, Succursale centre-ville, Montréal, Québec, H3C 3J7, Canada.
Department of Chemistry, Université de Montréal, C.P. 6128, Succursale centre-ville, Montréal, Québec, H3C 3J7, Canada.
J Mass Spectrom. 2015 Nov;50(11):1181-95. doi: 10.1002/jms.3646.
Remarkable advances in mass spectrometry sensitivity and resolution have been accomplished over the past two decades to enhance the depth and coverage of proteome analyses. As these technological developments expanded the detection capability of mass spectrometers, they also revealed an increasing complexity of low abundance peptides, solvent clusters and sample contaminants that can confound protein identification. Separation techniques that are complementary and can be used in combination with liquid chromatography are often sought to improve mass spectrometry sensitivity for proteomics applications. In this context, high-field asymmetric waveform ion mobility spectrometry (FAIMS), a form of ion mobility that exploits ion separation at low and high electric fields, has shown significant advantages by focusing and separating multiply charged peptide ions from singly charged interferences. This paper examines the analytical benefits of FAIMS in proteomics to separate co-eluting peptide isomers and to enhance peptide detection and quantitative measurements of protein digests via native peptides (label-free) or isotopically labeled peptides from metabolic labeling or chemical tagging experiments.
在过去二十年中,质谱灵敏度和分辨率取得了显著进展,以提高蛋白质组分析的深度和覆盖范围。随着这些技术的发展扩大了质谱仪的检测能力,它们也揭示了低丰度肽、溶剂簇和样品污染物的复杂性不断增加,这些可能会混淆蛋白质鉴定。人们经常寻求与液相色谱结合使用的互补分离技术,以提高蛋白质组学应用中质谱的灵敏度。在这种背景下,高场不对称波形离子迁移谱(FAIMS)作为一种离子迁移形式,利用低电场和高电场下的离子分离,通过聚焦和分离多电荷肽离子与单电荷干扰物,显示出显著优势。本文探讨了FAIMS在蛋白质组学中的分析优势,以分离共洗脱的肽异构体,并通过天然肽(无标记)或代谢标记或化学标记实验中的同位素标记肽来增强肽检测和蛋白质消化物的定量测量。