Proteomics

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Thunder-DDA-PASEF boosted by MS2rescore enables high-coverage immunopeptidomics and identifies HLA class-I presented SarsCoV-2 spike protein epitopes


ABSTRACT: Human leukocyte antigen (HLA) class I peptide ligands (HLAIps) are key targets for developing vaccines and immunotherapies against infectious pathogens or cancer cells. Identifying HLAIps is challenging due to their high diversity, low abundance, and patient individuality. Here, we developed a highly sensitive method for identifying HLAIps using liquid chromatography-ion mobility-tandem mass spectrometry (LC-IMS-MS/MS). The optimized method, Thunder-DDA-PASEF, semi-selectively fragments HLAIps based on their IMS and m/z, thus increasing the coverage of immunopeptidomics analyses. Thunder-DDA-PASEF includes singly-charged peptides, which contribute to more than 35% of the HLAIp identifications. Combined with MS2Rescore, Thunder-DDA-PASEF improved ligandome coverage by 150% compared to the Standard-DDA-PASEF method, and enabled in-depth profiling of HLAIps from two human cell lines, JY and Raji, transfected to express the SARS-CoV-2 spike protein. We identified 16 spike protein HLAIps, thirteen of which had been reported to elicit immune responses in human patients.

INSTRUMENT(S): timsTOF Pro 2

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Cell Culture

SUBMITTER: Aurélie Hirschler  

LAB HEAD: Christine Carapito

PROVIDER: PXD046535 | Pride | 2024-03-19

REPOSITORIES: Pride

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