Literature DB >> 30967486

TMT Labeling for the Masses: A Robust and Cost-efficient, In-solution Labeling Approach.

Jana Zecha1, Shankha Satpathy2, Tamara Kanashova3, Shayan C Avanessian2, M Harry Kane2, Karl R Clauser2, Philipp Mertins4, Steven A Carr5, Bernhard Kuster6.   

Abstract

Isobaric stable isotope labeling using, for example, tandem mass tags (TMTs) is increasingly being applied for large-scale proteomic studies. Experiments focusing on proteoform analysis in drug time course or perturbation studies or in large patient cohorts greatly benefit from the reproducible quantification of single peptides across samples. However, such studies often require labeling of hundreds of micrograms of peptides such that the cost for labeling reagents represents a major contribution to the overall cost of an experiment. Here, we describe and evaluate a robust and cost-effective protocol for TMT labeling that reduces the quantity of required labeling reagent by a factor of eight and achieves complete labeling. Under- and overlabeling of peptides derived from complex digests of tissues and cell lines were systematically evaluated using peptide quantities of between 12.5 and 800 μg and TMT-to-peptide ratios (wt/wt) ranging from 8:1 to 1:2 at different TMT and peptide concentrations. When reaction volumes were reduced to maintain TMT and peptide concentrations of at least 10 mm and 2 g/l, respectively, TMT-to-peptide ratios as low as 1:1 (wt/wt) resulted in labeling efficiencies of > 99% and excellent intra- and interlaboratory reproducibility. The utility of the optimized protocol was further demonstrated in a deep-scale proteome and phosphoproteome analysis of patient-derived xenograft tumor tissue benchmarked against the labeling procedure recommended by the TMT vendor. Finally, we discuss the impact of labeling reaction parameters for N-hydroxysuccinimide ester-based chemistry and provide guidance on adopting efficient labeling protocols for different peptide quantities.
© 2019 Zecha et al.

Entities:  

Keywords:  Labeling Efficiency; NHS Ester Chemistry; Peptides*; Phosphoproteome; Post-Translational Modifications*; Quantification; Stable Isotope Labeling; Tandem Mass Spectrometry; Tandem Mass Tags

Mesh:

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Year:  2019        PMID: 30967486      PMCID: PMC6601210          DOI: 10.1074/mcp.TIR119.001385

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  28 in total

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