Crystal structure of the Hendra virus attachment G glycoprotein bound to a potent cross-reactive neutralizing human monoclonal antibody Journal Article


Authors: Xu, K.; Rockx, B.; Xie, Y.; DeBuysscher, B. L.; Fusco, D. L.; Zhu, Z.; Chan, Y. P.; Xu, Y.; Luu, T.; Cer, R. Z.; Feldmann, H.; Mokashi, V.; Dimitrov, D. S.; Bishop-Lilly, K. A.; Broder, C. C.; Nikolov, D. B.
Article Title: Crystal structure of the Hendra virus attachment G glycoprotein bound to a potent cross-reactive neutralizing human monoclonal antibody
Abstract: The henipaviruses, represented by Hendra (HeV) and Nipah (NiV) viruses are highly pathogenic zoonotic paramyxoviruses with uniquely broad host tropisms responsible for repeated outbreaks in Australia, Southeast Asia, India and Bangladesh. The high morbidity and mortality rates associated with infection and lack of licensed antiviral therapies make the henipaviruses a potential biological threat to humans and livestock. Henipavirus entry is initiated by the attachment of the G envelope glycoprotein to host cell membrane receptors. Previously, henipavirus-neutralizing human monoclonal antibodies (hmAb) have been isolated using the HeV-G glycoprotein and a human naïve antibody library. One cross-reactive and receptor-blocking hmAb (m102.4) was recently demonstrated to be an effective post-exposure therapy in two animal models of NiV and HeV infection, has been used in several people on a compassionate use basis, and is currently in development for use in humans. Here, we report the crystal structure of the complex of HeV-G with m102.3, an m102.4 derivative, and describe NiV and HeV escape mutants. This structure provides detailed insight into the mechanism of HeV and NiV neutralization by m102.4, and serves as a blueprint for further optimization of m102.4 as a therapeutic agent and for the development of entry inhibitors and vaccines.
Journal Title: PLoS Pathogens
Volume: 9
Issue: 10
ISSN: 1553-7366
Publisher: Public Library of Science  
Date Published: 2013-10-01
Start Page: e1003684
Language: English
DOI: 10.1371/journal.ppat.1003684
PROVIDER: scopus
PMCID: PMC3795035
PUBMED: 24130486
DOI/URL:
Notes: --- - "Export Date: 2 December 2013" - "Source: Scopus"
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Dimitar B Nikolov
    87 Nikolov
  2. Kai Xu
    21 Xu
  3. Yihu Xie
    3 Xie