Cross-neutralization of four paramyxoviruses by a human monoclonal antibody

偏肺病毒 病毒学 单克隆抗体 抗体 表位 病毒 中和抗体 生物 免疫学 呼吸道感染 呼吸系统 解剖
作者
Davide Corti,Siro Bianchi,Fabrizia Vanzetta,Andrea Minola,Laurent Perez,Gloria Agatic,Barbara Guarino,Chiara Silacci,Jessica Marcandalli,Benjamin J. Marsland,Antonio Piralla,Elena Percivalle,Federica Sallusto,Fausto Baldanti,Antonio Lanzavecchia
出处
期刊:Nature [Nature Portfolio]
卷期号:501 (7467): 439-443 被引量:260
标识
DOI:10.1038/nature12442
摘要

Broadly neutralizing antibodies reactive against most and even all variants of the same viral species have been described for influenza and HIV-1 (ref. 1). However, whether a neutralizing antibody could have the breadth of range to target different viral species was unknown. Human respiratory syncytial virus (HRSV) and human metapneumovirus (HMPV) are common pathogens that cause severe disease in premature newborns, hospitalized children and immune-compromised patients, and play a role in asthma exacerbations. Although antisera generated against either HRSV or HMPV are not cross-neutralizing, we speculated that, because of the repeated exposure to these viruses, cross-neutralizing antibodies may be selected in some individuals. Here we describe a human monoclonal antibody (MPE8) that potently cross-neutralizes HRSV and HMPV as well as two animal paramyxoviruses: bovine RSV (BRSV) and pneumonia virus of mice (PVM). In its germline configuration, MPE8 is HRSV-specific and its breadth is achieved by somatic mutations in the light chain variable region. MPE8 did not result in the selection of viral escape mutants that evaded antibody targeting and showed potent prophylactic efficacy in animal models of HRSV and HMPV infection, as well as prophylactic and therapeutic efficacy in the more relevant model of lethal PVM infection. The core epitope of MPE8 was mapped on two highly conserved anti-parallel β-strands on the pre-fusion viral F protein, which are rearranged in the post-fusion F protein conformation. Twenty-six out of the thirty HRSV-specific neutralizing antibodies isolated were also found to be specific for the pre-fusion F protein. Taken together, these results indicate that MPE8 might be used for the prophylaxis and therapy of severe HRSV and HMPV infections and identify the pre-fusion F protein as a candidate HRSV vaccine.
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