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Antigen-specific T-cell receptor signatures of cytomegalovirus infection

View ORCID ProfileAlina Huth, Xiaoling Liang, Stefan Krebs, Helmut Blum, View ORCID ProfileAndreas Moosmann
doi: https://doi.org/10.1101/450882
Alina Huth
*DZIF Research Group “Host Control of Viral Latency and Reactivation” (HOCOVLAR), Research Unit Gene Vectors, Helmholtz Zentrum München, Munich, Germany
†German Center for Infection Research (DZIF – Deutsches Zentrum für Infektionsforschung), Munich, Germany
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Xiaoling Liang
*DZIF Research Group “Host Control of Viral Latency and Reactivation” (HOCOVLAR), Research Unit Gene Vectors, Helmholtz Zentrum München, Munich, Germany
‡HRYZ Biotech Co., Shenzhen, China
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Stefan Krebs
§Laboratory for Functional Genome Analysis (LAFUGA), Gene Center, Ludwig-Maximilians-Universität München, Munich, Germany
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Helmut Blum
§Laboratory for Functional Genome Analysis (LAFUGA), Gene Center, Ludwig-Maximilians-Universität München, Munich, Germany
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Andreas Moosmann
*DZIF Research Group “Host Control of Viral Latency and Reactivation” (HOCOVLAR), Research Unit Gene Vectors, Helmholtz Zentrum München, Munich, Germany
†German Center for Infection Research (DZIF – Deutsches Zentrum für Infektionsforschung), Munich, Germany
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Abstract

Cytomegalovirus (CMV) is a prevalent human pathogen. The virus cannot be eliminated from the body, but is kept in check by CMV-specific T cells. Patients with an insufficient T-cell response, such as transplant recipients, are at high risk of developing CMV disease. However, the CMV-specific T-cell repertoire is complex, and is not yet clear which T cells protect best against virus reactivation and disease. Here we present a highly resolved characterization of CMV-specific CD8+ T cells based on enrichment by specific peptide stimulation and mRNA sequencing of their T-cell receptor β chains (TCRβ). Our analysis included recently identified T-cell epitopes restricted through HLA-C, whose presentation is resistant to viral immunomodulation, and well-studied HLA-B-restricted epitopes. In 8 healthy virus carriers, we identified a total of 1052 CMV-specific TCRβ chains. HLA-C-restricted, CMV-specific TCRβ clonotypes the ex vivo T-cell response, and contributed the highest-frequency clonotype of the entire repertoire in 2 of 8 donors. We analyzed sharing and similarity of CMV-specific TCRβ sequences and identified 63 public or related sequences belonging to 17 public TCRβ families. In our cohort and in an independent cohort of 352 donors, the cumulative frequency of these public TCRβ family members was a highly discriminatory indicator of carrying both CMV infection and the relevant HLA type. Based on these findings, we propose CMV-specific TCRβ signatures as a biomarker for an antiviral T-cell response to identify patients in need of treatment and to guide future development of immunotherapy.

Footnotes

  • This work was supported by Deutsche Forschungsgemeinschaft (SFB-TR36, Project A4).

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Posted October 24, 2018.
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Antigen-specific T-cell receptor signatures of cytomegalovirus infection
Alina Huth, Xiaoling Liang, Stefan Krebs, Helmut Blum, Andreas Moosmann
bioRxiv 450882; doi: https://doi.org/10.1101/450882
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Antigen-specific T-cell receptor signatures of cytomegalovirus infection
Alina Huth, Xiaoling Liang, Stefan Krebs, Helmut Blum, Andreas Moosmann
bioRxiv 450882; doi: https://doi.org/10.1101/450882

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