Literature DB >> 29118126

Respiratory Syncytial Virus: Targeting the G Protein Provides a New Approach for an Old Problem.

Ralph A Tripp1, Ultan F Power2, Peter J M Openshaw3, Lawrence M Kauvar4.   

Abstract

Respiratory syncytial virus (RSV) is a major cause of lower respiratory tract infection (LRTI) annually affecting >2 million children in the United States <5 years old. In the elderly (>65 years old), RSV results in ∼175,000 hospitalizations annually in the United States with a worldwide incidence of ∼34 million. There is no approved RSV vaccine, and treatments are limited. Recently, a phase 3 trial in the elderly using a recombinant RSV F protein vaccine failed to meet its efficacy objectives, namely, prevention of moderate-to-severe RSV-associated LRTI and reduced incidence of acute respiratory disease. Moreover, a recent phase 3 trial evaluating suptavumab (REGN2222), an antibody to RSV F protein, did not meet its primary endpoint of preventing medically attended RSV infections in preterm infants. Despite these setbacks, numerous efforts targeting the RSV F protein with vaccines, antibodies, and small molecules continue based on the commercial success of a monoclonal antibody (MAb) against the RSV F protein (palivizumab). As the understanding of RSV biology has improved, the other major coat protein, the RSV G protein, has reemerged as an alternative target reflecting progress in understanding its roles in infecting bronchial epithelial cells and in altering the host immune response. In mouse models, a high-affinity, strain-independent human MAb to the RSV G protein has shown potent direct antiviral activity combined with the alleviation of virus-induced immune system effects that contribute to disease pathology. This MAb, being prepared for clinical trials, provides a qualitatively new approach to managing RSV for populations not eligible for prophylaxis with palivizumab.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  F protein; G protein; RSV; monoclonal antibodies; palivizumab; respiratory syncytial virus

Mesh:

Substances:

Year:  2018        PMID: 29118126      PMCID: PMC5774885          DOI: 10.1128/JVI.01302-17

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  52 in total

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Authors:  H W Kim; J G Canchola; C D Brandt; G Pyles; R M Chanock; K Jensen; R H Parrott
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Authors:  Stephania A Cormier; Bishwas Shrestha; Jordy Saravia; Greg I Lee; Li Shen; John P DeVincenzo; Young-In Kim; Dahui You
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Authors:  Lia M Haynes; Hayat Caidi; Gertrud U Radu; Congrong Miao; Jennifer L Harcourt; Ralph A Tripp; Larry J Anderson
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Authors:  Lindsay Broadbent; Helen Groves; Michael D Shields; Ultan F Power
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Journal:  Nat Commun       Date:  2016-12-21       Impact factor: 14.919

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2.  Conformational Flexibility in Respiratory Syncytial Virus G Neutralizing Epitopes.

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Journal:  J Virol       Date:  2020-02-28       Impact factor: 5.103

3.  Structures of respiratory syncytial virus G antigen bound to broadly neutralizing antibodies.

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Journal:  Sci Immunol       Date:  2018-03-09

4.  Structural basis for ultrapotent antibody-mediated neutralization of human metapneumovirus.

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5.  Immunogenicity and protective efficacy of RSV G central conserved domain vaccine with a prefusion nanoparticle.

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Review 6.  Palivizumab for preventing severe respiratory syncytial virus (RSV) infection in children.

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7.  Features of the Human Antibody Response against the Respiratory Syncytial Virus Surface Glycoprotein G.

Authors:  Kristina Borochova; Katarzyna Niespodziana; Katarina Stenberg Hammar; Marianne van Hage; Gunilla Hedlin; Cilla Söderhäll; Margarete Focke-Tejkl; Rudolf Valenta
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8.  Development of Luciferase Immunoprecipitation Systems (LIPS) Assay to Detect IgG Antibodies against Human Respiratory Syncytial Virus G-Glycoprotein.

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9.  Protective antigenic sites in respiratory syncytial virus G attachment protein outside the central conserved and cysteine noose domains.

Authors:  Jeehyun Lee; Laura Klenow; Elizabeth M Coyle; Hana Golding; Surender Khurana
Journal:  PLoS Pathog       Date:  2018-08-24       Impact factor: 6.823

10.  Type I Interferon Potentiates IgA Immunity to Respiratory Syncytial Virus Infection During Infancy.

Authors:  Diego R Hijano; David T Siefker; Bishwas Shrestha; Sridhar Jaligama; Luan D Vu; Heather Tillman; David Finkelstein; Jordy Saravia; Dahui You; Stephania A Cormier
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