Structures of respiratory syncytial virus G antigen bound to broadly neutralizing antibodies.
Title | Structures of respiratory syncytial virus G antigen bound to broadly neutralizing antibodies. |
Publication Type | Journal Article |
Year of Publication | 2018 |
Authors | Fedechkin, Stanislav O., George Natasha L., Wolff Jacob T., Kauvar Lawrence M., and DuBois Rebecca M. |
Journal | Sci Immunol |
Volume | 3 |
Issue | 21 |
Date Published | 2018 Mar 09 |
ISSN | 2470-9468 |
Abstract | Respiratory syncytial virus (RSV) is a top cause of severe lower respiratory tract disease and mortality in young children and the elderly. The viral envelope G glycoprotein contributes to pathogenesis through its roles in host cell attachment and modulation of host immunity. Although the G glycoprotein is a target of protective RSV-neutralizing antibodies, its development as a vaccine antigen has been hindered by its heterogeneous glycosylation and sequence variability outside a conserved central domain (CCD). We describe the cocrystal structures of two high-affinity broadly neutralizing human monoclonal antibodies bound to the RSV G CCD. The antibodies bind to neighboring conformational epitopes, which we named antigenic sites γ1 and γ2, that span a highly conserved surface, illuminating an important region of vulnerability. We further show that isolated RSV G CCD activates the chemokine receptor CX3CR1 and that antibodies block this activity. These studies provide a template for rational vaccine design targeting this key contributor to RSV disease. |
DOI | 10.1126/sciimmunol.aar3534 |
Alternate Journal | Sci Immunol |
PubMed ID | 29523582 |