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PSMtags

Scaling protein analysis to 1,000+ proteomes per day using PSMtags.

Protein ids w/9-Plex

We developed PSMtag, a novel chemical tag, which increases protein coverage and sample throughput simultaneously - without compromising accuracy. We implemented combinatorial chemistry and high-throughput screening to generate thousands of tag candidates. PSMtag enables 9 samples run in parallel (9-plexDIA). PSMtag is our first generation of this technology, and we are designing new tags to achieve even higher throughput.


Publications

bioRxivMay 2025 DOI: 10.1101/2025.05.22.655509

PSMtags improve peptide sequencing and throughput in sensitive proteomics

Mass spectrometry-based proteomics enables comprehensive characterization of protein abundance, function, and interactions. Label-free approaches are simple to implement but challenging to scale to thousands of samples per day. Multiplexed techniques, such as plexDIA, can address these limitations but remain restricted by the lack of mass tags optimized for data independent acquisition (DIA) workflows. Here, we present a systematic approach screening a library of 576 compounds that identifies several small molecules that, when conjugated to peptides, improve their detection and sequence identification by mass spectrometry. The lead molecule, PSMtag, substantially increases the detection of fragment b-ions, which increases the confidence of sequence identification and enhances de novo sequencing. PSMtags allow 9-plexDIA, using only stable isotopes of carbon, oxygen and nitrogen. As a result, it allows simultaneously increasing proteome coverage and sample throughput for plexDIA workflows without compromising quantitative accuracy. We demonstrate 240 samples-per-day with 9-plexDIA, while acquiring 28,359 protein data points in same time label-free methods acquire 4,340. Our approach constitutes an expandable framework for designing mass tags to overcome existing limitations in multiplexed proteomics and provides plexDIA reagents capable of analyzing over 1,000 samples per day when using 10 minute runs. By facilitating higher throughput and improved identification, this innovation holds significant potential for accelerating proteomic studies across diverse biological and clinical applications.
PSMtags improve peptide sequencing and throughput in sensitive proteomics

Data & Code

Data on MassIVEDownload
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Presentations

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