Literature DB >> 34810222

Identification and Characterization of Antigen-Specific CD8+ T Cells Using Surface-Trapped TNF-α and Single-Cell Sequencing.

Shaheed Abdulhaqq1, Abigail B Ventura1, Jason S Reed1, Arman A Bashirova2,3, Katherine B Bateman1, Eric McDonald1, Helen L Wu1, Justin M Greene1, John B Schell1, David Morrow1, Karin Wisskirchen4, Jeffrey N Martin5, Steven G Deeks6, Mary Carrington2,3,7, Ulrike Protzer4, Klaus Früh1, Scott G Hansen1, Louis J Picker1, Jonah B Sacha8,9, Benjamin N Bimber10.   

Abstract

CD8+ T cells are key mediators of antiviral and antitumor immunity. The isolation and study of Ag-specific CD8+ T cells, as well as mapping of their MHC restriction, has practical importance to the study of disease and the development of therapeutics. Unfortunately, most experimental approaches are cumbersome, owing to the highly variable and donor-specific nature of MHC-bound peptide/TCR interactions. Here we present a novel system for rapid identification and characterization of Ag-specific CD8+ T cells, particularly well suited for samples with limited primary cells. Cells are stimulated ex vivo with Ag of interest, followed by live cell sorting based on surface-trapped TNF-α. We take advantage of major advances in single-cell sequencing to generate full-length sequence data from the paired TCR α- and β-chains from these Ag-specific cells. The paired TCR chains are cloned into retroviral vectors and used to transduce donor CD8+ T cells. These TCR transductants provide a virtually unlimited experimental reagent, which can be used for further characterization, such as minimal epitope mapping or identification of MHC restriction, without depleting primary cells. We validated this system using CMV-specific CD8+ T cells from rhesus macaques, characterizing an immunodominant Mamu-A1*002:01-restricted epitope. We further demonstrated the utility of this system by mapping a novel HLA-A*68:02-restricted HIV Gag epitope from an HIV-infected donor. Collectively, these data validate a new strategy to rapidly identify novel Ags and characterize Ag-specific CD8+ T cells, with applications ranging from the study of infectious disease to immunotherapeutics and precision medicine.
Copyright © 2021 by The American Association of Immunologists, Inc.

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Year:  2021        PMID: 34810222      PMCID: PMC9124229          DOI: 10.4049/jimmunol.2100535

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.426


  62 in total

1.  HIV-1-specific cytotoxicity is preferentially mediated by a subset of CD8(+) T cells producing both interferon-gamma and tumor necrosis factor-alpha.

Authors:  Mathias Lichterfeld; Xu G Yu; Michael T Waring; Stanley K Mui; Mary N Johnston; Daniel Cohen; Marylyn M Addo; John Zaunders; Galit Alter; Eunice Pae; Daryld Strick; Todd M Allen; Eric S Rosenberg; Bruce D Walker; Marcus Altfeld
Journal:  Blood       Date:  2004-04-01       Impact factor: 22.113

Review 2.  High-dimensional analysis of human CD8(+) T cell phenotype, function, and antigen specificity.

Authors:  Evan W Newell; Wenyu Lin
Journal:  Curr Top Microbiol Immunol       Date:  2014       Impact factor: 4.291

3.  A human T cell-specific cDNA clone encodes a protein having extensive homology to immunoglobulin chains.

Authors:  Y Yanagi; Y Yoshikai; K Leggett; S P Clark; I Aleksander; T W Mak
Journal:  Nature       Date:  1984 Mar 8-14       Impact factor: 49.962

Review 4.  Cancer immunoediting: integrating immunity's roles in cancer suppression and promotion.

Authors:  Robert D Schreiber; Lloyd J Old; Mark J Smyth
Journal:  Science       Date:  2011-03-25       Impact factor: 47.728

5.  Natural killer cell receptors regulate responses of HLA-E-restricted T cells.

Authors:  Lucy C Sullivan; Thi H O Nguyen; Christopher M Harpur; Sanda Stankovic; Abbie R Kanagarajah; Marios Koutsakos; Philippa M Saunders; Zhangying Cai; James A Gray; Jacqueline M L Widjaja; Jie Lin; Gabriella Pietra; Maria Cristina Mingari; Lorenzo Moretta; Jerome Samir; Fabio Luciani; Glen P Westall; Karl J Malmberg; Katherine Kedzierska; Andrew G Brooks
Journal:  Sci Immunol       Date:  2021-04-23

6.  A metalloprotease inhibitor blocks shedding of the 80-kD TNF receptor and TNF processing in T lymphocytes.

Authors:  P D Crowe; B N Walter; K M Mohler; C Otten-Evans; R A Black; C F Ware
Journal:  J Exp Med       Date:  1995-03-01       Impact factor: 14.307

Review 7.  Detecting Antigen-Specific T Cell Responses: From Bulk Populations to Single Cells.

Authors:  Chansavath Phetsouphanh; John James Zaunders; Anthony Dominic Kelleher
Journal:  Int J Mol Sci       Date:  2015-08-12       Impact factor: 5.923

Review 8.  Targeting cancers through TCR-peptide/MHC interactions.

Authors:  Qinghua He; Xianhan Jiang; Xinke Zhou; Jinsheng Weng
Journal:  J Hematol Oncol       Date:  2019-12-18       Impact factor: 17.388

9.  HLA Alleles Associated with Delayed Progression to AIDS Contribute Strongly to the Initial CD8(+) T Cell Response against HIV-1.

Authors:  Marcus Altfeld; Elizabeth T Kalife; Ying Qi; Hendrik Streeck; Mathias Lichterfeld; Mary N Johnston; Nicole Burgett; Martha E Swartz; Amy Yang; Galit Alter; Xu G Yu; Angela Meier; Juergen K Rockstroh; Todd M Allen; Heiko Jessen; Eric S Rosenberg; Mary Carrington; Bruce D Walker
Journal:  PLoS Med       Date:  2006-10       Impact factor: 11.069

10.  Open conformers of HLA-F are high-affinity ligands of the activating NK-cell receptor KIR3DS1.

Authors:  Wilfredo F Garcia-Beltran; Angelique Hölzemer; Gloria Martrus; Amy W Chung; Yovana Pacheco; Camille R Simoneau; Marijana Rucevic; Pedro A Lamothe-Molina; Thomas Pertel; Tae-Eun Kim; Haley Dugan; Galit Alter; Julie Dechanet-Merville; Stephanie Jost; Mary Carrington; Marcus Altfeld
Journal:  Nat Immunol       Date:  2016-07-25       Impact factor: 25.606

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  1 in total

1.  Identification and characterization of the T cell receptor (TCR) repertoire of the cynomolgus macaque (Macaca Fascicularis).

Authors:  Swati Jaiswal; Sarah K Nyquist; Shayla Boyce; Tasneem Jivanjee; Samira Ibrahim; Joshua D Bromley; G James Gatter; Hannah Gideon; Kush Patel; Sharie Keanne Ganchua; Bonnie Berger; Sarah M Fortune; JoAnne L Flynn; Alex K Shalek; Samuel M Behar
Journal:  BMC Genomics       Date:  2022-09-12       Impact factor: 4.547

  1 in total

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