黄病毒
登革热
登革热病毒
病毒血症
病毒学
抗体
病毒
生物
寨卡病毒
抗体依赖性增强
免疫学
作者
Scott B. Biering,David L. Akey,Marcus P. Wong,William Clay Brown,Nicholas T. N. Lo,Henry Puerta‐Guardo,Francielle Tramontini Gomes de Sousa,Chunling Wang,Jamie R. Konwerski,Diego A. Espinosa,Nicholas J. Bockhaus,Dustin R. Glasner,Jeffrey Li,Sophie F. Blanc,Evan Y. W. Juan,Stephen J. Elledge,Michael J. Mina,P. Robert Beatty,Janet L. Smith,Eva Harris
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2021-01-07
卷期号:371 (6525): 194-200
被引量:145
标识
DOI:10.1126/science.abc0476
摘要
Medically important flaviviruses cause diverse disease pathologies and collectively are responsible for a major global disease burden. A contributing factor to pathogenesis is secreted flavivirus nonstructural protein 1 (NS1). Despite demonstrated protection by NS1-specific antibodies against lethal flavivirus challenge, the structural and mechanistic basis remains unknown. Here, we present three crystal structures of full-length dengue virus NS1 complexed with a flavivirus-cross-reactive, NS1-specific monoclonal antibody, 2B7, at resolutions between 2.89 and 3.96 angstroms. These structures reveal a protective mechanism by which two domains of NS1 are antagonized simultaneously. The NS1 wing domain mediates cell binding, whereas the β-ladder triggers downstream events, both of which are required for dengue, Zika, and West Nile virus NS1-mediated endothelial dysfunction. These observations provide a mechanistic explanation for 2B7 protection against NS1-induced pathology and demonstrate the potential of one antibody to treat infections by multiple flaviviruses.
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