Memory T-Cell-Mediated Immune Responses Specific to an Alternative Core Protein in Hepatitis C Virus Infection

Author:

Bain Christine1,Parroche Peggy1,Lavergne Jean Pierre2,Duverger Blandine3,Vieux Claude4,Dubois Valérie5,Komurian-Pradel Florence3,Trépo Christian4,Gebuhrer Lucette5,Paranhos-Baccala Glaucia3,Penin François2,Inchauspé Geneviève1

Affiliation:

1. FRE 2736, Ecole Normale Supérieure

2. Laboratoire de Bioinformatique et RMN structurales, Institut de Biologie et chimie des protéines, UMR 5086 CNRS, Université Claude Bernard Lyon I

3. UMR 2714, Tour CERVI, IFR 128 Biosciences Lyon Gerland

4. Hôtel Dieu

5. Etablissement de Transfusion Sanguine, Lyon, France

Abstract

ABSTRACT In vitro studies have described the synthesis of an alternative reading frame form of the hepatitis C virus (HCV) core protein that was named F protein or ARFP (alternative reading frame protein) and includes a domain coded by the +1 open reading frame of the RNA core coding region. The expression of this protein in HCV-infected patients remains controversial. We have analyzed peripheral blood from 47 chronically or previously HCV-infected patients for the presence of T lymphocytes and antibodies specific to the ARFP. Anti-ARFP antibodies were detected in 41.6% of the patients infected with various HCV genotypes. Using a specific ARFP 99-amino-acid polypeptide as well as four ARFP predicted class I-restricted 9-mer peptides, we show that 20% of the patients display specific lymphocytes capable of producing gamma interferon, interleukin-10, or both cytokines. Patients harboring three different viral genotypes (1a, 1b, and 3) carried T lymphocytes reactive to genotype 1b-derived peptides. In longitudinal analysis of patients receiving therapy, both core and ARFP-specific T-cell- and B-cell-mediated responses were documented. The magnitude and kinetics of the HCV antigen-specific responses differed and were not linked with viremia or therapy outcome. These observations provide strong and new arguments in favor of the synthesis, during natural HCV infection, of an ARFP derived from the core sequence. Moreover, the present data provide the first demonstration of the presence of T-cell-mediated immune responses directed to this novel HCV antigen.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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