Proteomics

Dataset Information

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Proton Transfer Charge Reduction Enables Isobaric Labeling-Based Proteoform Quantification of Overlapping Signals in Top-Down Mass Spectrometry


ABSTRACT: Top-down mass spectrometry provides a powerful approach for analyzing and quantifying intact proteoforms, i.e., the distinct molecular forms of proteins. Isobaric labeling-based quantification strategies offer the advantages of multiplexing and increased analytical depth. However, a major challenge remains the quantification of proteoforms when their precursor signals overlap, leading to mixed reporter ion intensities. In this proof-of-concept study, we employed proton transfer charge reduction (PTCR) at the MS2 level to resolve overlapping precursor signals, allowing selective isolation of individual proteoforms and subsequently, their accurate reporter ion quantification at the MS3 level. Using direct infusion mass spectrometry of model proteins labeled with cysteine-directed tandem mass tags, we demonstrate that this approach enables accurate, interference-free reporter ion-based quantification in the presence of overlapping proteoforms and spectrally congested backgrounds. This work highlights PTCR as a versatile gas-phase separation strategy to enhance the quantitative capabilities of labeling-based top-down mass spectrometry, offering a path toward precise, proteoform-resolved quantification across diverse experimental approaches.

INSTRUMENT(S):

ORGANISM(S): Bos Taurus (bovine) Gallus Gallus (chicken)

SUBMITTER: Andreas Tholey  

LAB HEAD: Andreas Tholey

PROVIDER: PXD074730 | Pride | 2026-06-08

REPOSITORIES: pride

Dataset's files

Source:
Action DRS
BSA_highres_MS1.raw Raw
LysozymeMS1_FLASHDeconv.tsv Tabular
Lysozyme_MS1.raw Raw
Lysozyme_MS2_1060p18.raw Raw
Lysozyme_MS2_1060p18_PTCR.raw Raw
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Publications

Proton Transfer Charge Reduction Enables Isobaric Labeling-Based Proteoform Quantification of Overlapping Signals in Top-Down Mass Spectrometry.

Kaulich Philipp T PT   Tholey Andreas A  

Journal of the American Society for Mass Spectrometry 20260422 5


Top-down mass spectrometry provides a powerful approach for analyzing and quantifying intact proteoforms, i.e., the distinct molecular forms of proteins. Isobaric labeling-based quantification strategies offer the advantages of multiplexing and increased analytical depth. However, a major challenge remains the quantification of proteoforms when their precursor signals overlap, leading to mixed reporter ion intensities. In this proof-of-concept study, we employed proton transfer charge reduction  ...[more]

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