Literature DB >> 21964502

Measurement of human plasma proteome dynamics with (2)H(2)O and liquid chromatography tandem mass spectrometry.

John C Price1, William E Holmes, Kelvin W Li, Nicholas A Floreani, Richard A Neese, Scott M Turner, Marc K Hellerstein.   

Abstract

Dysfunction of protein turnover is a feature of many human diseases, and proteins are substrates in important biological processes. Currently, no method exists for the measurement of global protein turnover (i.e., proteome dynamics) that can be applied in humans. Here we describe the use of metabolic labeling with deuterium ((2)H) from (2)H(2)O and liquid chromatography tandem mass spectrometry (LC-MS/MS) analysis of mass isotopomer patterns to measure protein turnover. We show that the positions available for (2)H label incorporation in vivo can be calculated using peptide sequence. The isotopic incorporation values calculated by combinatorial analysis of mass isotopomer patterns in peptides correlate very closely with values established for individual amino acids. Inpatient and outpatient heavy water labeling protocols resulted in (2)H label incorporation sufficient for reproducible quantitation in humans. Replacement rates were similar for peptides deriving from the same protein. Using a kinetic model to account for the time course of each individual's (2)H(2)O enrichment curves, dynamics of approximately 100 proteins with half-lives ranging from 0.4 to 40 days were measured using 8 μl of plasma. The measured rates were consistent with literature values. This method can be used to measure in vivo proteome homeostasis in humans in disease and during therapeutic interventions.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21964502     DOI: 10.1016/j.ab.2011.09.007

Source DB:  PubMed          Journal:  Anal Biochem        ISSN: 0003-2697            Impact factor:   3.365


  48 in total

1.  Practical immunoaffinity-enrichment LC-MS for measuring protein kinetics of low-abundance proteins.

Authors:  Michael E Lassman; Thomas McAvoy; Anita Y H Lee; Derek Chappell; Oitak Wong; Haihong Zhou; Gissette Reyes-Soffer; Henry N Ginsberg; John S Millar; Daniel J Rader; David E Gutstein; Omar Laterza
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2.  Modeling the contribution of individual proteins to mixed skeletal muscle protein synthetic rates over increasing periods of label incorporation.

Authors:  Benjamin F Miller; Christopher A Wolff; Fredrick F Peelor; Patrick D Shipman; Karyn L Hamilton
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Review 3.  Proteome dynamics: revisiting turnover with a global perspective.

Authors:  Amy J Claydon; Robert Beynon
Journal:  Mol Cell Proteomics       Date:  2012-11-02       Impact factor: 5.911

Review 4.  Protein analysis by shotgun/bottom-up proteomics.

Authors:  Yaoyang Zhang; Bryan R Fonslow; Bing Shan; Moon-Chang Baek; John R Yates
Journal:  Chem Rev       Date:  2013-02-26       Impact factor: 60.622

5.  Protein kinetic signatures of the remodeling heart following isoproterenol stimulation.

Authors:  Maggie P Y Lam; Ding Wang; Edward Lau; David A Liem; Allen K Kim; Dominic C M Ng; Xiangbo Liang; Brian J Bleakley; Chenguang Liu; Jason D Tabaraki; Martin Cadeiras; Yibin Wang; Mario C Deng; Peipei Ping
Journal:  J Clin Invest       Date:  2014-03-10       Impact factor: 14.808

Review 6.  Stable isotope tracers and exercise physiology: past, present and future.

Authors:  Daniel J Wilkinson; Matthew S Brook; Kenneth Smith; Philip J Atherton
Journal:  J Physiol       Date:  2016-10-09       Impact factor: 5.182

Review 7.  Spatial and temporal dynamics of the cardiac mitochondrial proteome.

Authors:  Edward Lau; Derrick Huang; Quan Cao; T Umut Dincer; Caitie M Black; Amanda J Lin; Jessica M Lee; Ding Wang; David A Liem; Maggie P Y Lam; Peipei Ping
Journal:  Expert Rev Proteomics       Date:  2015-03-09       Impact factor: 3.940

Review 8.  Proteomics Research in Cardiovascular Medicine and Biomarker Discovery.

Authors:  Maggie P Y Lam; Peipei Ping; Elizabeth Murphy
Journal:  J Am Coll Cardiol       Date:  2016-12-27       Impact factor: 24.094

9.  Circulating protein synthesis rates reveal skeletal muscle proteome dynamics.

Authors:  Mahalakshmi Shankaran; Chelsea L King; Thomas E Angel; William E Holmes; Kelvin W Li; Marc Colangelo; John C Price; Scott M Turner; Christopher Bell; Karyn L Hamilton; Benjamin F Miller; Marc K Hellerstein
Journal:  J Clin Invest       Date:  2015-12-14       Impact factor: 14.808

10.  Cardiac mitochondrial proteome dynamics with heavy water reveals stable rate of mitochondrial protein synthesis in heart failure despite decline in mitochondrial oxidative capacity.

Authors:  Kadambari Chandra Shekar; Ling Li; Erinne R Dabkowski; Wenhong Xu; Rogerio Faustino Ribeiro; Peter A Hecker; Fabio A Recchia; Rovshan G Sadygov; Belinda Willard; Takhar Kasumov; William C Stanley
Journal:  J Mol Cell Cardiol       Date:  2014-07-01       Impact factor: 5.000

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