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Export Vaccine-elicited T cell responses can contribute to immune protection against emerging infectious disease risks such as antimicrobial-resistant (AMR) microbial pathogens and viruses with pandemic potential, but rapidly identifying appropriate targets for T cell priming vaccines remains challenging. Mass spectrometry (MS) analysis of peptides presented on MHCs can identify potential targets for protective T cell responses in a proteome-wide manner. However, pathogen-derived peptides are outnumbered by self-peptides in the MHC repertoire and may be missed in untargeted MS analyses. Here, we present a novel approach, termed PathMHC, that uses computational analysis of untargeted MS data followed by targeted MS to discover novel pathogen-derived MHC peptides more efficiently than untargeted methods alone. We applied this workflow to identify MHC peptides derived from multiple microbes, including potential vaccine targets presented on MHC-I by human dendritic cells infected with Mycobacterium tuberculosis (Mtb), finding that all Mtb peptides detected in the MHC-I repertoire derived from proteins exported by type VII secretion systems. PathMHC will facilitate antigen discovery campaigns for vaccine development.
SEEK ID: https://nextseek-dev.mit.edu/publications/62
PubMed ID: 40689854
DOI: 10.1084/jem.20250444
Projects: Published Data
Publication type: Journal
Journal: J Exp Med
Citation: J Exp Med. 2025 Oct 6;222(10):e20250444. doi: 10.1084/jem.20250444. Epub 2025 Jul 21.
Date Published: 6th Oct 2025
Registered Mode: by PubMed ID
SubmitterViews: 33
Created: 25th Aug 2026 at 19:23
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