An LC-IMS-MS Platform Providing Increased Dynamic Range for High-Throughput Proteomic Studies

被引:100
作者
Baker, Erin Shammel
Livesay, Eric A.
Orton, Daniel J.
Moore, Ronald J.
Danielson, William F., III
Prior, David C.
Ibrahim, Yehia M.
LaMarche, Brian L.
Mayampurath, Anoop M.
Schepmoes, Athena A.
Hopkins, Derek F.
Tang, Keqi
Smith, Richard D.
Belov, Mikhail E. [1 ]
机构
[1] Pacific NW Natl Lab, Div Biol Sci, Richland, WA 99352 USA
关键词
Ion mobility spectrometry; IMS-MS; LC-IMS-MS; high-throughput RPLC; ION-CYCLOTRON RESONANCE; CAPILLARY LIQUID-CHROMATOGRAPHY; FLIGHT MASS-SPECTROMETRY; HUMAN PLASMA PROTEOME; MOBILITY SPECTROMETRY; BIOMARKER DISCOVERY; RPLC SEPARATIONS; FUNNEL TRAP; CANCER; PERSPECTIVE;
D O I
10.1021/pr900888b
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A high-throughput approach and platform using 15 min reversed-phase capillary liquid chromatography (RPLC) separations in conjunction with ion mobility spectrometry-mass spectrometry (IMS-MS) measurements was evaluated for the rapid analysis of complex proteomics samples. To test the separation quality of the short LC gradient, a sample was prepared by spiking 20 reference peptides at varying concentrations from 1 ng/mL to 10 mu g/mL into a tryptic digest of mouse blood plasma and analyzed with both a L-C-Linear Ion Trap Fourier Transform (FT) MS and LC-IMS-TOF MS. The LC-FT MS detected 13 out of the 20 spiked peptides that had concentrations >= 100 ng/mL. In contrast, the drift time selected mass spectra from the LC-IMS-TOF MS analyses yielded identifications for 19 of the 20 peptides with all spiking levels present. The greater dynamic range of the LC-IMS-TOF MS system could be attributed to two factors. First, the LC-IMS-TOF MS system enabled drift time separation of the low concentration spiked peptides from the high concentration mouse peptide matrix components, reducing signal interference and background, and allowing species to be resolved that would otherwise be obscured by other components. Second, the automatic gain control (AGC) in the linear ion trap of the hybrid FT MS instrument limits the number of ions that are accumulated to reduce space charge effects and achieve high measurement accuracy, but in turn limits the achievable dynamic range compared to the IMS-TOF instrument.
引用
收藏
页码:997 / 1006
页数:10
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