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Asymmetric and non-stoichiometric glycoprotein recognition by two distinct antibodies results in broad protection against ebolaviruses.

Authors :
Milligan JC
Davis CW
Yu X
Ilinykh PA
Huang K
Halfmann PJ
Cross RW
Borisevich V
Agans KN
Geisbert JB
Chennareddy C
Goff AJ
Piper AE
Hui S
Shaffer KCL
Buck T
Heinrich ML
Branco LM
Crozier I
Holbrook MR
Kuhn JH
Kawaoka Y
Glass PJ
Bukreyev A
Geisbert TW
Worwa G
Ahmed R
Saphire EO
Source :
Cell [Cell] 2022 Mar 17; Vol. 185 (6), pp. 995-1007.e18.
Publication Year :
2022

Abstract

Several ebolaviruses cause outbreaks of severe disease. Vaccines and monoclonal antibody cocktails are available to treat Ebola virus (EBOV) infections, but not Sudan virus (SUDV) or other ebolaviruses. Current cocktails contain antibodies that cross-react with the secreted soluble glycoprotein (sGP) that absorbs virus-neutralizing antibodies. By sorting memory B cells from EBOV infection survivors, we isolated two broadly reactive anti-GP monoclonal antibodies, 1C3 and 1C11, that potently neutralize, protect rodents from disease, and lack sGP cross-reactivity. Both antibodies recognize quaternary epitopes in trimeric ebolavirus GP. 1C11 bridges adjacent protomers via the fusion loop. 1C3 has a tripartite epitope in the center of the trimer apex. One 1C3 antigen-binding fragment anchors simultaneously to the three receptor-binding sites in the GP trimer, and separate 1C3 paratope regions interact differently with identical residues on the three protomers. A cocktail of both antibodies completely protected nonhuman primates from EBOV and SUDV infections, indicating their potential clinical value.<br />Competing Interests: Declaration of interests R.A., C.D., and E.O.S. are inventors on a patent relating to the antibodies described in this work. All other authors declare no competing interests.<br /> (Copyright © 2022 Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1097-4172
Volume :
185
Issue :
6
Database :
MEDLINE
Journal :
Cell
Publication Type :
Academic Journal
Accession number :
35303429
Full Text :
https://doi.org/10.1016/j.cell.2022.02.023