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Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction

HIV-1 entry into host cells is mediated by the sequential binding of the envelope glycoprotein gp120 to CD4 and a chemokine receptor. Antibodies binding to epitopes overlapping the CD4-binding site on gp120 are potent inhibitors of HIV entry, such as the llama heavy chain antibody fragment V(HH) D7,...

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Autores principales: Hinz, Andreas, Lutje Hulsik, David, Forsman, Anna, Koh, Willie Wee-Lee, Belrhali, Hassan, Gorlani, Andrea, de Haard, Hans, Weiss, Robin A., Verrips, Theo, Weissenhorn, Winfried
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2864739/
https://www.ncbi.nlm.nih.gov/pubmed/20463957
http://dx.doi.org/10.1371/journal.pone.0010482
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author Hinz, Andreas
Lutje Hulsik, David
Forsman, Anna
Koh, Willie Wee-Lee
Belrhali, Hassan
Gorlani, Andrea
de Haard, Hans
Weiss, Robin A.
Verrips, Theo
Weissenhorn, Winfried
author_facet Hinz, Andreas
Lutje Hulsik, David
Forsman, Anna
Koh, Willie Wee-Lee
Belrhali, Hassan
Gorlani, Andrea
de Haard, Hans
Weiss, Robin A.
Verrips, Theo
Weissenhorn, Winfried
author_sort Hinz, Andreas
collection PubMed
description HIV-1 entry into host cells is mediated by the sequential binding of the envelope glycoprotein gp120 to CD4 and a chemokine receptor. Antibodies binding to epitopes overlapping the CD4-binding site on gp120 are potent inhibitors of HIV entry, such as the llama heavy chain antibody fragment V(HH) D7, which has cross-clade neutralizing properties and competes with CD4 and mAb b12 for high affinity binding to gp120. We report the crystal structure of the D7 V(HH) at 1.5 Å resolution, which reveals the molecular details of the complementarity determining regions (CDR) and substantial flexibility of CDR3 that could facilitate an induced fit interaction with gp120. Structural comparison of CDRs from other CD4 binding site antibodies suggests diverse modes of interaction. Mutational analysis identified CDR3 as a key component of gp120 interaction as determined by surface plasmon resonance. A decrease in affinity is directly coupled to the neutralization efficiency since mutations that decrease gp120 interaction increase the IC50 required for HIV-1 IIIB neutralization. Thus the structural study identifies the long CDR3 of D7 as the key determinant of interaction and HIV-1 neutralization. Furthermore, our data confirm that the structural plasticity of gp120 can accommodate multiple modes of antibody binding within the CD4 binding site.
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spelling pubmed-28647392010-05-12 Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction Hinz, Andreas Lutje Hulsik, David Forsman, Anna Koh, Willie Wee-Lee Belrhali, Hassan Gorlani, Andrea de Haard, Hans Weiss, Robin A. Verrips, Theo Weissenhorn, Winfried PLoS One Research Article HIV-1 entry into host cells is mediated by the sequential binding of the envelope glycoprotein gp120 to CD4 and a chemokine receptor. Antibodies binding to epitopes overlapping the CD4-binding site on gp120 are potent inhibitors of HIV entry, such as the llama heavy chain antibody fragment V(HH) D7, which has cross-clade neutralizing properties and competes with CD4 and mAb b12 for high affinity binding to gp120. We report the crystal structure of the D7 V(HH) at 1.5 Å resolution, which reveals the molecular details of the complementarity determining regions (CDR) and substantial flexibility of CDR3 that could facilitate an induced fit interaction with gp120. Structural comparison of CDRs from other CD4 binding site antibodies suggests diverse modes of interaction. Mutational analysis identified CDR3 as a key component of gp120 interaction as determined by surface plasmon resonance. A decrease in affinity is directly coupled to the neutralization efficiency since mutations that decrease gp120 interaction increase the IC50 required for HIV-1 IIIB neutralization. Thus the structural study identifies the long CDR3 of D7 as the key determinant of interaction and HIV-1 neutralization. Furthermore, our data confirm that the structural plasticity of gp120 can accommodate multiple modes of antibody binding within the CD4 binding site. Public Library of Science 2010-05-05 /pmc/articles/PMC2864739/ /pubmed/20463957 http://dx.doi.org/10.1371/journal.pone.0010482 Text en Hinz et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hinz, Andreas
Lutje Hulsik, David
Forsman, Anna
Koh, Willie Wee-Lee
Belrhali, Hassan
Gorlani, Andrea
de Haard, Hans
Weiss, Robin A.
Verrips, Theo
Weissenhorn, Winfried
Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title_full Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title_fullStr Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title_full_unstemmed Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title_short Crystal Structure of the Neutralizing Llama V(HH) D7 and Its Mode of HIV-1 gp120 Interaction
title_sort crystal structure of the neutralizing llama v(hh) d7 and its mode of hiv-1 gp120 interaction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2864739/
https://www.ncbi.nlm.nih.gov/pubmed/20463957
http://dx.doi.org/10.1371/journal.pone.0010482
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