ERAP1 allotypes shape the epitope repertoire of virus-specific CD8+ T cell responses in acute hepatitis C virus infection. 2019

Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
Department of Medicine II, University Medical Center Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Germany; Faculty of Biology, University of Freiburg, Freiburg, Germany.

Endoplasmic reticulum aminopeptidase 1 (ERAP1) polymorphisms are linked with human leukocyte antigen (HLA) class I-associated autoinflammatory disorders, including ankylosing spondylitis and Behçet's disease. Disease-associated ERAP1 allotypes exhibit distinct functional properties, but it remains unclear how differential peptide trimming in vivo affects the repertoire of epitopes presented to CD8+ T cells. The aim of this study was to determine the impact of ERAP1 allotypes on the virus-specific CD8+ T cell epitope repertoire in an HLA-B*27:05+ individual with acute hepatitis C virus (HCV) infection. We performed genetic and functional analyses of ERAP1 allotypes and characterized the HCV-specific CD8+ T cell repertoire at the level of fine epitope specificity and HLA class I restriction, in a patient who had acquired an HCV genotype 1a infection through a needle-stick injury. Two hypoactive allotypic variants of ERAP1 were identified in an individual with acute HCV infection. The associated repertoire of virus-derived epitopes recognized by CD8+ T cells was uncommon in a couple of respects. Firstly, reactivity was directed away from classically immunodominant epitopes, preferentially targeting either novel or subdominant epitopes. Secondly, reactivity was biased towards longer epitopes (10-11-mers). Despite the patient exhibiting favorable prognostic indicators, these atypical immune responses failed to clear the virus and the patient developed persistent low-level infection with HCV. ERAP1 allotypes modify the virus-specific CD8+ T cell epitope repertoire in vivo, leading to altered immunodominance patterns that may contribute to the failure of antiviral immunity after infection with HCV. Endoplasmic reticulum aminopeptidase 1 (ERAP1) plays a key role in antigen presentation. Genetic variants of ERAP1 (leading to distinct allotypes) are linked with specific autoinflammatory disorders, such as ankylosing spondylitis and Behçet's disease. We found that ERAP1 allotypes modified the repertoire of virus-specific CD8+ T cell epitopes in a patient with hepatitis C virus, leading to an altered pattern of immunodominance that may have contributed to the failure of antiviral immunity in this patient.

UI MeSH Term Description Entries
D006526 Hepatitis C INFLAMMATION of the LIVER in humans caused by HEPATITIS C VIRUS, a single-stranded RNA virus. Its incubation period is 30-90 days. Hepatitis C is transmitted primarily by contaminated blood parenterally and is often associated with transfusion and intravenous drug abuse. However, in a significant number of cases, the source of hepatitis C infection is unknown. Hepatitis, Viral, Non-A, Non-B, Parenterally-Transmitted,Parenterally-Transmitted Non-A, Non-B Hepatitis,PT-NANBH,Parenterally Transmitted Non A, Non B Hepatitis
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000208 Acute Disease Disease having a short and relatively severe course. Acute Diseases,Disease, Acute,Diseases, Acute
D000626 Aminopeptidases A subclass of EXOPEPTIDASES that act on the free N terminus end of a polypeptide liberating a single amino acid residue. EC 3.4.11. Aminopeptidase
D015778 Minor Histocompatibility Antigens Allelic alloantigens often responsible for weak graft rejection in cases when (major) histocompatibility has been established by standard tests. In the mouse they are coded by more than 500 genes at up to 30 minor histocompatibility loci. The most well-known minor histocompatibility antigen in mammals is the H-Y antigen. Histocompatibility Antigens, Minor,Minor Histocompatibility Antigen,Minor Histocompatibility Peptide,Minor Histocompatibility Peptides,Antigen, Minor Histocompatibility,Histocompatibility Antigen, Minor,Histocompatibility Peptide, Minor,Histocompatibility Peptides, Minor,Peptide, Minor Histocompatibility
D016174 Hepacivirus A genus of FLAVIVIRIDAE causing parenterally-transmitted HEPATITIS C which is associated with transfusions and drug abuse. Hepatitis C virus is the type species. Hepatitis C virus,Hepatitis C-Like Viruses,Hepaciviruses,Hepatitis C Like Viruses,Hepatitis C viruses,Hepatitis C-Like Virus
D018414 CD8-Positive T-Lymphocytes A critical subpopulation of regulatory T-lymphocytes involved in MHC Class I-restricted interactions. They include both cytotoxic T-lymphocytes (T-LYMPHOCYTES, CYTOTOXIC) and CD8+ suppressor T-lymphocytes. Suppressor T-Lymphocytes, CD8-Positive,T8 Cells,T8 Lymphocytes,CD8-Positive Lymphocytes,Suppressor T-Cells, CD8-Positive,CD8 Positive Lymphocytes,CD8 Positive T Lymphocytes,CD8-Positive Lymphocyte,CD8-Positive Suppressor T-Cell,CD8-Positive Suppressor T-Cells,CD8-Positive Suppressor T-Lymphocyte,CD8-Positive Suppressor T-Lymphocytes,CD8-Positive T-Lymphocyte,Cell, T8,Cells, T8,Lymphocyte, CD8-Positive,Lymphocyte, T8,Lymphocytes, CD8-Positive,Lymphocytes, T8,Suppressor T Cells, CD8 Positive,Suppressor T Lymphocytes, CD8 Positive,Suppressor T-Cell, CD8-Positive,Suppressor T-Lymphocyte, CD8-Positive,T-Cell, CD8-Positive Suppressor,T-Cells, CD8-Positive Suppressor,T-Lymphocyte, CD8-Positive,T-Lymphocyte, CD8-Positive Suppressor,T-Lymphocytes, CD8-Positive,T-Lymphocytes, CD8-Positive Suppressor,T8 Cell,T8 Lymphocyte
D018984 Epitopes, T-Lymphocyte Antigenic determinants recognized and bound by the T-cell receptor. Epitopes recognized by the T-cell receptor are often located in the inner, unexposed side of the antigen, and become accessible to the T-cell receptors after proteolytic processing of the antigen. T-Cell Epitopes,T-Lymphocyte Epitopes,T-Cell Epitope,T-Lymphocyte Epitope,Epitope, T-Cell,Epitope, T-Lymphocyte,Epitopes, T Lymphocyte,Epitopes, T-Cell,T Cell Epitope,T Cell Epitopes,T Lymphocyte Epitope,T Lymphocyte Epitopes

Related Publications

Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
January 2014, Frontiers in immunology,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
July 2018, Journal of viral hepatitis,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
October 2008, Journal of virology,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
March 2011, Journal of viral hepatitis,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
April 2021, NPJ vaccines,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
May 2015, Journal of virology,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
February 2016, The Journal of infectious diseases,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
December 2006, Journal of virology,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
June 2017, Digestive and liver disease : official journal of the Italian Society of Gastroenterology and the Italian Association for the Study of the Liver,
Janine Kemming, and Emma Reeves, and Katja Nitschke, and Vanessa Widmeier, and Florian Emmerich, and Tobias Hermle, and Emma Gostick, and Andreas Walker, and Jörg Timm, and David A Price, and Maike Hofmann, and Robert Thimme, and Edward James, and Christoph Neumann-Haefelin
October 2005, Journal of virology,
Copied contents to your clipboard!