Achieving a 35-Plex Tandem Mass Tag Reagent Set through Deuterium Incorporation

  • J Proteome Res. 2024 Nov 1;23(11):5153-5165. doi: 10.1021/acs.jproteome.4c00668.
Nathan R Zuniga  1 ,  Dustin C Frost  2 ,  Karsten Kuhn  3 ,  Myungsun Shin  1 ,  Rebecca L Whitehouse  1 ,  Ting-Yu Wei  1 ,  Yuchen He  1 ,  Shane L Dawson  1 ,  Ian Pike  3 ,  Ryan D Bomgarden  2 ,  Steven P Gygi  1 ,  Joao A Paulo  1
Affiliations
  • 1. Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, United States.
  • 2. Thermo Fisher Scientific, Rockford, Illinois 61101, United States.
  • 3. Proteome Sciences, London KT15 2HJ, U.K.
Abstract

Mass spectrometry-based sample multiplexing with isobaric tags permits the development of high-throughput and precise quantitative biological assays with proteome-wide coverage and minimal missing values. Here, we nearly doubled the multiplexing capability of the TMTpro reagent set to a 35-plex through the incorporation of one deuterium isotope into the reporter group. Substituting deuterium frequently results in suboptimal PEAK coelution, which can compromise the accuracy of reporter ion-based quantification. To counteract the deuterium effect on quantitation, we implemented a strategy that necessitated the segregation of nondeuterium and deuterium-containing channels into distinct subplexes during normalization procedures, with reassembly through a common bridge channel. This multiplexing strategy of "design independent sub-plexes but acquire together" (DISAT) was used to compare protein expression differences between human cell lines and in a cysteine-profiling (i.e., chemoproteomics) experiment to identify compounds binding to cysteine-113 of PIN1.

Keywords
ABPP; Astral; TMTpro; TMTproD; deuterium; isobaric tagging.
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