Common Antiviral Cytotoxic T-Lymphocyte Epitope for Diverse Arenaviruses

Author:

Oldstone Michael B. A.1,Lewicki Hanna1,Homann Dirk1,Nguyen Christophe2,Julien Sylvianne2,Gairin Jean Edouard2

Affiliation:

1. Division of Virology, Department of Neuropharmacology, The Scripps Research Institute, La Jolla, California 92037,1 and

2. Institut de Pharmacologie et de Biologie Structurale, CNRS, 31400 Toulouse, France2

Abstract

ABSTRACT Members of the Arenaviridae family have been isolated from mammalian hosts in disparate geographic locations, leading to their grouping as Old World types (i.e., lymphocytic choriomeningitis virus [LCMV], Lassa fever virus [LFV], Mopeia virus, and Mobala virus) and New World types (i.e., Junin, Machupo, Tacaribe, and Sabia viruses) (C. J. Peters, M. J. Buchmeier, P. E. Rollin, and T. G. Ksiazek, p. 1521–1551, in B. N. Fields, D. M. Knipe, and P. M. Howley [ed.], Fields virology, 3rd ed., 1996; P. J. Southern, p. 1505–1519, in B. N. Fields, D. M. Knipe, and P. M. Howley [ed.], Fields virology, 3rd ed., 1996). Several types in both groups—LFV, Junin, Machupo, and Sabia viruses—cause severe and often lethal human diseases. By sequence comparison, we noted that eight Old World and New World arenaviruses share several amino acids with the nucleoprotein (NP) that consists of amino acids (aa) 118 to 126 (NP 118–126) (RPQASGVYM) of LCMV that comprise the immunodominant cytotoxic T-lymphocyte (CTL) epitope for H-2 d mice (32). This L d -restricted epitope constituted >97% of the total bulk CTLs produced in the specific antiviral or clonal responses of H-2 d BALB mice. NP 118–126 of the Old World arenaviruses LFV, Mopeia virus, and LCMV and the New World arenavirus Sabia virus bound at high affinity to L d . The primary H-2 d CTL anti-LCMV response as well as that of a CTL clone responsive to LCMV NP 118–126 recognized target cells coated with NP 118–126 peptides derived from LCMV, LFV, and Mopeia virus but not Sabia virus, indicating that a common functional NP epitope exists among Old World arenaviruses. Use of site-specific amino acid exchanges in the NP CTL epitope among these arenaviruses identified amino acids involved in major histocompatibility complex binding and CTL recognition.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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