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Rational Engineering and Characterization of an mAb that Neutralizes Zika Virus by Targeting a Mutationally Constrained Quaternary Epitope.

Authors :
Tharakaraman K
Watanabe S
Chan KR
Huan J
Subramanian V
Chionh YH
Raguram A
Quinlan D
McBee M
Ong EZ
Gan ES
Tan HC
Tyagi A
Bhushan S
Lescar J
Vasudevan SG
Ooi EE
Sasisekharan R
Source :
Cell host & microbe [Cell Host Microbe] 2018 May 09; Vol. 23 (5), pp. 618-627.e6.
Publication Year :
2018

Abstract

Following the recent emergence of Zika virus (ZIKV), many murine and human neutralizing anti-ZIKV antibodies have been reported. Given the risk of virus escape mutants, engineering antibodies that target mutationally constrained epitopes with therapeutically relevant potencies can be valuable for combating future outbreaks. Here, we applied computational methods to engineer an antibody, ZAb_FLEP, that targets a highly networked and therefore mutationally constrained surface formed by the envelope protein dimer. ZAb_FLEP neutralized a breadth of ZIKV strains and protected mice in distinct in vivo models, including resolving vertical transmission and fetal mortality in infected pregnant mice. Serial passaging of ZIKV in the presence of ZAb_FLEP failed to generate viral escape mutants, suggesting that its epitope is indeed mutationally constrained. A single-particle cryo-EM reconstruction of the Fab-ZIKV complex validated the structural model and revealed insights into ZAb_FLEP's neutralization mechanism. ZAb_FLEP has potential as a therapeutic in future outbreaks.<br /> (Copyright © 2018. Published by Elsevier Inc.)

Details

Language :
English
ISSN :
1934-6069
Volume :
23
Issue :
5
Database :
MEDLINE
Journal :
Cell host & microbe
Publication Type :
Academic Journal
Accession number :
29746833
Full Text :
https://doi.org/10.1016/j.chom.2018.04.004