Profiling SARS-CoV-2 HLA-I peptidome reveals T cell epitopes from out-of-frame ORFs

对SARS-CoV-2 HLA-I肽组进行分析,揭示了来自移码开放阅读框的T细胞表位

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作者:Shira Weingarten-Gabbay ,Susan Klaeger ,Siranush Sarkizova ,Leah R Pearlman ,Da-Yuan Chen ,Kathleen M E Gallagher ,Matthew R Bauer ,Hannah B Taylor ,W Augustine Dunn ,Christina Tarr ,John Sidney ,Suzanna Rachimi ,Hasahn L Conway ,Katelin Katsis ,Yuntong Wang ,Del Leistritz-Edwards ,Melissa R Durkin ,Christopher H Tomkins-Tinch ,Yaara Finkel ,Aharon Nachshon ,Matteo Gentili ,Keith D Rivera ,Isabel P Carulli ,Vipheaviny A Chea ,Abishek Chandrashekar ,Cansu Cimen Bozkus ,Mary Carrington ,Dan H Barouch ,Alessandro Sette ,Marcela V Maus ,Charles M Rice ,Karl R Clauser ,Derin B Keskin ,Daniel C Pregibon ,Nir Hacohen ,Steven A Carr ,Jennifer G Abelin ,Mohsan Saeed ,Pardis C Sabeti

Abstract

T cell-mediated immunity plays an important role in controlling SARS-CoV-2 infection, but the repertoire of naturally processed and presented viral epitopes on class I human leukocyte antigen (HLA-I) remains uncharacterized. Here, we report the first HLA-I immunopeptidome of SARS-CoV-2 in two cell lines at different times post infection using mass spectrometry. We found HLA-I peptides derived not only from canonical open reading frames (ORFs) but also from internal out-of-frame ORFs in spike and nucleocapsid not captured by current vaccines. Some peptides from out-of-frame ORFs elicited T cell responses in a humanized mouse model and individuals with COVID-19 that exceeded responses to canonical peptides, including some of the strongest epitopes reported to date. Whole-proteome analysis of infected cells revealed that early expressed viral proteins contribute more to HLA-I presentation and immunogenicity. These biological insights, as well as the discovery of out-of-frame ORF epitopes, will facilitate selection of peptides for immune monitoring and vaccine development.

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