Secreted Respiratory Syncytial Virus G Glycoprotein Induces Interleukin-5 (IL-5), IL-13, and Eosinophilia by an IL-4-Independent Mechanism

Author:

Johnson Teresa R.1,Graham Barney S.12

Affiliation:

1. Departments of Microbiology & Immunology1 and

2. Medicine,2 Vanderbilt University School of Medicine, Nashville, Tennessee 37232-2582

Abstract

ABSTRACT The attachment glycoprotein G of respiratory syncytial virus (RSV) is produced as both membrane-anchored and secreted forms by infected cells. Immunization with secreted RSV G (Gs) or formalin-inactivated alumprecipitated RSV (FI-RSV) predisposes mice to immune responses involving a Th2 cell phenotype which results in more severe illness and pathology, decreased viral clearance, and increased pulmonary eosinophilia upon subsequent RSV challenge. These responses are associated with increased interleukin-4 (IL-4) production in FI-RSV-primed mice, and the responses are IL-4 dependent. RNase protection assays demonstrated that similar levels of IL-4 mRNA were induced after RSV challenge in mice primed with vaccinia virus expressing Gs (vvGs) or a construct expressing only membrane-anchored G (vvGr). However, upon RSV challenge, vvGs-primed mice produced significantly greater levels of IL-5 and IL-13 mRNA and protein than vvGr-primed mice. Administration of neutralizing anti-IL-4 antibody 11.B11 during vaccinia virus priming did not alter the levels of vvGs-induced IL-5, IL-13, pulmonary eosinophilia, illness, or RSV titers upon RSV challenge, although immunoglobulin G (IgG) isotype profiles revealed that more IgG2a was produced. vvGs-priming of IL-4-deficient mice demonstrated that G-induced airway eosinophilia was not dependent on IL-4. In contrast, airway eosinophilia induced by FI-RSV priming was significantly reduced in IL-4-deficient mice. Thus we conclude that, in contrast to FI-RSV, the secreted form of RSV G can directly induce IL-5 and IL-13, producing pulmonary eosinophilia and enhanced illness in RSV-challenged mice by an IL-4-independent mechanism.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference83 articles.

1. Distinct types of lung disease caused by functional subsets of antiviral T cells;Alwan W. H.;J. Exp. Med.,1994

2. Distinct patterns of T- and B-cell immunity to respiratory syncytial virus induced by individual viral proteins;Alwan W. H.;Vaccine,1993

3. CD4+ T cells clear virus but augment disease in mice infected with respiratory syncytial virus: comparison with the effects of CD8+ T cells;Alwan W. H.;Clin. Exp. Immunol.,1992

4. Phenotypic and functional characterization of T cell lines specific for individual respiratory syncytial virus proteins;Alwan W. H.;J. Immunol.,1993

5. Expression of the major glycoprotein G of human respiratory syncytial virus from recombinant vaccinia virus vectors;Ball L. A.;Proc. Natl. Acad. Sci. USA,1986

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