Quantitative Analysis of Isotope Distributions In Proteomic Mass Spectrometry Using Least-Squares Fourier Transform Convolution
- 4 June 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 80 (13) , 4906-4917
- https://doi.org/10.1021/ac800080v
Abstract
Quantitative proteomic mass spectrometry involves comparison of the amplitudes of peaks resulting from different isotope labeling patterns, including fractional atomic labeling and fractional residue labeling. We have developed a general and flexible analytical treatment of the complex isotope distributions that arise in these experiments, using Fourier transform convolution to calculate labeled isotope distributions and least-squares for quantitative comparison with experimental peaks. The degree of fractional atomic and fractional residue labeling can be determined from experimental peaks at the same time as the integrated intensity of all of the isotopomers in the isotope distribution. The approach is illustrated using data with fractional 15N-labeling and fractional 13C-isoleucine labeling. The least-squares Fourier transform convolution approach can be applied to many types of quantitive proteomic data, including data from stable isotope labeling by amino acids in cell culture and pulse labeling experiments.Keywords
This publication has 35 references indexed in Scilit:
- Avian proteomics: advances, challenges and new technologiesCytogenetic and Genome Research, 2007
- Proteomics in 2005/2006: Developments, Applications and ChallengesAnalytical Chemistry, 2007
- Implications of 15N‐metabolic labeling for automated peptide identification in Arabidopsis thalianaProteomics, 2007
- Functional and quantitative proteomics using SILACNature Reviews Molecular Cell Biology, 2006
- Metabolic Labeling of Proteins for ProteomicsMolecular & Cellular Proteomics, 2005
- Nucleolar proteome dynamicsNature, 2005
- Metabolic labeling of C. elegans and D. melanogaster for quantitative proteomicsNature Biotechnology, 2003
- Stable Isotope Labeling by Amino Acids in Cell Culture, SILAC, as a Simple and Accurate Approach to Expression ProteomicsMolecular & Cellular Proteomics, 2002
- High Throughput Proteome-Wide Precision Measurements of Protein Expression Using Mass SpectrometryJournal of the American Chemical Society, 1999
- Accurate quantitation of protein expression and site-specific phosphorylationProceedings of the National Academy of Sciences, 1999