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Recognition determinants of broadly neutralizing human antibodies against dengue viruses

Authors :
Rouvinski, Alexander
Guardado-Calvo, Pablo
Barba-Spaeth, Giovanna
Duquerroy, Stephane
Vaney, Marie- Christine
Kikuti, Carlos M.
Sanchez, M. Erika Navarro
Dejnirattisai, Wanwisa
Wongwiwat, Wiyada
Haouz, Ahmed
Girard- Blanc, Christine
Petres, Stephane
Shepard, William E.
Despres, Philippe
Arenzana-Seisdedos, Fernando
Dussart, Philippe
Mongkolsapaya, Juthathip
Screaton, Gavin R.
Rey, Felix A.
Source :
Nature. April 2, 2015, p109, 16 p.
Publication Year :
2015

Abstract

Dengue disease is caused by four different flavivirus (1) serotypes, which infect 390 million people yearly with 25% symptomatic cases (2) and for which no licensed vaccine is available. Recent phase III vaccine trials showed partial protection, and in particular no protection for dengue virus serotype 2 (refs 3,4). Structural studies so far have characterized only epitopes recognized by serotype-specific human antibodies (5,6). We recently isolated human antibodies potently neutralizing all four dengue virus serotypes (7). Here we describe the X-ray structures of four of these broadly neutralizing antibodies in complex with the envelope glycoprotein E from dengue virus serotype 2, revealing that the recognition determinants are at a serotype-invariant site at the E-dimer interface, including the exposed main chain of the E fusion loop (8) and the two conserved glycan chains. This 'E-dimer-dependent epitope' is also the binding site for the viral glycoprotein prM during virus maturation in the secretory pathway of the infected cell (9), explaining its conservation across serotypes and highlighting an Achilles' heel of the virus with respect to antibody neutralization. These findings will be instrumental for devising novel immunogens to protect simultaneously against all four serotypes of dengue virus.<br />Exposed at the surface of infectious mature dengue virus (DENV) particles, protein E is the sole target of neutralizing antibodies. It displays an icosahedral arrangement in which 90 E dimers [...]

Details

Language :
English
ISSN :
00280836
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.408158275