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Novel Linear Quadrupole Ion Trap/FT Mass Spectrometer:  Performance Characterization and Use in the Comparative Analysis of Histone H3 Post-translational Modifications

Journal of Proteome Research · 2004 · Vol. 3(3) · pp. 621–626
John E. P. SykaJarrod A. MartoDina L. BaiStevan HorningMichael W. SenkoJae C. SchwartzBeatrix UeberheideBenjamin A. GarcíaScott A. BusbyTara L. MuratoreJeffrey ShabanowitzDonald F. Hunt

Abstract

We describe the design and performance of a prototype high performance hybrid mass spectrometer. This instrument consists of a linear quadrupole ion trap (QLT) coupled to a Fourier transform ion cyclotron resonance mass analyzer (FTMS). This configuration provides rapid and automated MS and MS/MS analyses, similar to the "data dependent scanning" found on standard 3-D Paul traps, but with substantially improved internal scan dynamic range, mass measurement accuracy, mass resolution, and detection limits. Sequence analysis of peptides at the zeptomole level is described. The recently released, commercial version of this instrument operates in the LC/MS mode (1 s/scan) with a mass resolution of 100 000 and is equipped with automatic gain control to provide mass measurement accuracy of 1-2 ppm without internal standard. Methodology is described that uses this instrument to compare the post-translational modifications present on histone H3 isolated from asynchronously growing cells and cells arrested in mitosis.

Genomics and Chromatin DynamicsEpigenetics and DNA MethylationRNA and protein synthesis mechanismsQuadrupole ion trapMass spectrometryFourier transform ion cyclotron resonanceIon trapHybrid mass spectrometerChemistrySelected ion monitoringQuadrupole mass analyzerAnalytical Chemistry (journal)Selected reaction monitoring

MeSH terms

Amino Acid SequenceFourier AnalysisHeLa CellsHistonesHumansMitosisMolecular Sequence DataPeptidesMass Spectrometry
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References
The language of covalent histone modifications
Nature · 2000 · 8,530 citations
The many faces of histone lysine methylation
Current Opinion in Cell Biology · 2002 · 810 citations
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