Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity

Broadly neutralizing antibodies targeting HIV Env could potentially be utilized as therapeutics. Here, Steinhardt et al. engineer a trispecific antibody with specificity for the receptor-binding site, a conserved Env glycan patch and the Env membrane proximal region with nearly pan-isolate neutraliz...

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Autores principales: James J. Steinhardt, Javier Guenaga, Hannah L. Turner, Krisha McKee, Mark K. Louder, Sijy O’Dell, Chi-I Chiang, Lin Lei, Andrey Galkin, Alexander K. Andrianov, Nicole A. Doria-Rose, Robert T. Bailer, Andrew B. Ward, John R. Mascola, Yuxing Li
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/03eaed1d2e664ef483d4e8852e3946e7
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spelling oai:doaj.org-article:03eaed1d2e664ef483d4e8852e3946e72021-12-02T16:56:37ZRational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity10.1038/s41467-018-03335-42041-1723https://doaj.org/article/03eaed1d2e664ef483d4e8852e3946e72018-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03335-4https://doaj.org/toc/2041-1723Broadly neutralizing antibodies targeting HIV Env could potentially be utilized as therapeutics. Here, Steinhardt et al. engineer a trispecific antibody with specificity for the receptor-binding site, a conserved Env glycan patch and the Env membrane proximal region with nearly pan-isolate neutralization breadth and high potency.James J. SteinhardtJavier GuenagaHannah L. TurnerKrisha McKeeMark K. LouderSijy O’DellChi-I ChiangLin LeiAndrey GalkinAlexander K. AndrianovNicole A. Doria-RoseRobert T. BailerAndrew B. WardJohn R. MascolaYuxing LiNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-12 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
James J. Steinhardt
Javier Guenaga
Hannah L. Turner
Krisha McKee
Mark K. Louder
Sijy O’Dell
Chi-I Chiang
Lin Lei
Andrey Galkin
Alexander K. Andrianov
Nicole A. Doria-Rose
Robert T. Bailer
Andrew B. Ward
John R. Mascola
Yuxing Li
Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
description Broadly neutralizing antibodies targeting HIV Env could potentially be utilized as therapeutics. Here, Steinhardt et al. engineer a trispecific antibody with specificity for the receptor-binding site, a conserved Env glycan patch and the Env membrane proximal region with nearly pan-isolate neutralization breadth and high potency.
format article
author James J. Steinhardt
Javier Guenaga
Hannah L. Turner
Krisha McKee
Mark K. Louder
Sijy O’Dell
Chi-I Chiang
Lin Lei
Andrey Galkin
Alexander K. Andrianov
Nicole A. Doria-Rose
Robert T. Bailer
Andrew B. Ward
John R. Mascola
Yuxing Li
author_facet James J. Steinhardt
Javier Guenaga
Hannah L. Turner
Krisha McKee
Mark K. Louder
Sijy O’Dell
Chi-I Chiang
Lin Lei
Andrey Galkin
Alexander K. Andrianov
Nicole A. Doria-Rose
Robert T. Bailer
Andrew B. Ward
John R. Mascola
Yuxing Li
author_sort James J. Steinhardt
title Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
title_short Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
title_full Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
title_fullStr Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
title_full_unstemmed Rational design of a trispecific antibody targeting the HIV-1 Env with elevated anti-viral activity
title_sort rational design of a trispecific antibody targeting the hiv-1 env with elevated anti-viral activity
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/03eaed1d2e664ef483d4e8852e3946e7
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