Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.

Human herpesvirus 6 (HHV-6) is prevalent in healthy persons, causes disease in immunosuppressed carriers, and may be involved in autoimmune disease. Cytotoxic CD8 T cells are probably important for effective control of infection. However, the HHV-6-specific CD8 T cell repertoire is largely uncharact...

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Main Authors: Larissa K Martin, Alexandra Hollaus, Anna Stahuber, Christoph Hübener, Alessia Fraccaroli, Johanna Tischer, Andrea Schub, Andreas Moosmann
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-04-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC5919459?pdf=render
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spelling doaj-839a95fe548443c0aa7d1a377885a5642020-11-25T00:55:40ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742018-04-01144e100699110.1371/journal.ppat.1006991Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.Larissa K MartinAlexandra HollausAnna StahuberChristoph HübenerAlessia FraccaroliJohanna TischerAndrea SchubAndreas MoosmannHuman herpesvirus 6 (HHV-6) is prevalent in healthy persons, causes disease in immunosuppressed carriers, and may be involved in autoimmune disease. Cytotoxic CD8 T cells are probably important for effective control of infection. However, the HHV-6-specific CD8 T cell repertoire is largely uncharacterized. Therefore, we undertook a virus-wide analysis of CD8 T cell responses to HHV-6. We used a simple anchor motif-based algorithm (SAMBA) to identify 299 epitope candidates potentially presented by the HLA class I molecule B*08:01. Candidates were found in 77 of 98 unique HHV-6B proteins. From peptide-expanded T cell lines, we obtained CD8 T cell clones against 20 candidates. We tested whether T cell clones recognized HHV-6-infected cells. This was the case for 16 epitopes derived from 12 proteins from all phases of the viral replication cycle. Epitopes were enriched in certain amino acids flanking the peptide. Ex vivo analysis of eight healthy donors with HLA-peptide multimers showed that the strongest responses were directed against an epitope from IE-2, with a median frequency of 0.09% of CD8 T cells. Reconstitution of T cells specific for this and other HHV-6 epitopes was also observed after allogeneic hematopoietic stem cell transplantation. We conclude that HHV-6 induces CD8 T cell responses against multiple antigens of diverse functional classes. Most antigens against which CD8 T cells can be raised are presented by infected cells. Ex vivo multimer staining can directly identify HHV-6-specific T cells. These results will advance development of immune monitoring, adoptive T cell therapy, and vaccines.http://europepmc.org/articles/PMC5919459?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Larissa K Martin
Alexandra Hollaus
Anna Stahuber
Christoph Hübener
Alessia Fraccaroli
Johanna Tischer
Andrea Schub
Andreas Moosmann
spellingShingle Larissa K Martin
Alexandra Hollaus
Anna Stahuber
Christoph Hübener
Alessia Fraccaroli
Johanna Tischer
Andrea Schub
Andreas Moosmann
Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
PLoS Pathogens
author_facet Larissa K Martin
Alexandra Hollaus
Anna Stahuber
Christoph Hübener
Alessia Fraccaroli
Johanna Tischer
Andrea Schub
Andreas Moosmann
author_sort Larissa K Martin
title Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
title_short Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
title_full Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
title_fullStr Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
title_full_unstemmed Cross-sectional analysis of CD8 T cell immunity to human herpesvirus 6B.
title_sort cross-sectional analysis of cd8 t cell immunity to human herpesvirus 6b.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2018-04-01
description Human herpesvirus 6 (HHV-6) is prevalent in healthy persons, causes disease in immunosuppressed carriers, and may be involved in autoimmune disease. Cytotoxic CD8 T cells are probably important for effective control of infection. However, the HHV-6-specific CD8 T cell repertoire is largely uncharacterized. Therefore, we undertook a virus-wide analysis of CD8 T cell responses to HHV-6. We used a simple anchor motif-based algorithm (SAMBA) to identify 299 epitope candidates potentially presented by the HLA class I molecule B*08:01. Candidates were found in 77 of 98 unique HHV-6B proteins. From peptide-expanded T cell lines, we obtained CD8 T cell clones against 20 candidates. We tested whether T cell clones recognized HHV-6-infected cells. This was the case for 16 epitopes derived from 12 proteins from all phases of the viral replication cycle. Epitopes were enriched in certain amino acids flanking the peptide. Ex vivo analysis of eight healthy donors with HLA-peptide multimers showed that the strongest responses were directed against an epitope from IE-2, with a median frequency of 0.09% of CD8 T cells. Reconstitution of T cells specific for this and other HHV-6 epitopes was also observed after allogeneic hematopoietic stem cell transplantation. We conclude that HHV-6 induces CD8 T cell responses against multiple antigens of diverse functional classes. Most antigens against which CD8 T cells can be raised are presented by infected cells. Ex vivo multimer staining can directly identify HHV-6-specific T cells. These results will advance development of immune monitoring, adoptive T cell therapy, and vaccines.
url http://europepmc.org/articles/PMC5919459?pdf=render
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