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Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein

Entry of HIV-1 into target cells requires binding of the viral envelope glycoprotein (Env) to cellular receptors and subsequent conformational changes that culminates in fusion of viral and target cell membranes. Recent structural information has revealed that these conformational transitions are re...

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Autores principales: Kassa, Aemro, Dey, Antu K., Sarkar, Pampi, Labranche, Celia, Go, Eden P., Clark, Daniel F., Sun, Yide, Nandi, Avishek, Hartog, Karin, Desaire, Heather, Montefiori, David, Carfi, Andrea, Srivastava, Indresh K., Barnett, Susan W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3797752/
https://www.ncbi.nlm.nih.gov/pubmed/24146829
http://dx.doi.org/10.1371/journal.pone.0076139
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author Kassa, Aemro
Dey, Antu K.
Sarkar, Pampi
Labranche, Celia
Go, Eden P.
Clark, Daniel F.
Sun, Yide
Nandi, Avishek
Hartog, Karin
Desaire, Heather
Montefiori, David
Carfi, Andrea
Srivastava, Indresh K.
Barnett, Susan W.
author_facet Kassa, Aemro
Dey, Antu K.
Sarkar, Pampi
Labranche, Celia
Go, Eden P.
Clark, Daniel F.
Sun, Yide
Nandi, Avishek
Hartog, Karin
Desaire, Heather
Montefiori, David
Carfi, Andrea
Srivastava, Indresh K.
Barnett, Susan W.
author_sort Kassa, Aemro
collection PubMed
description Entry of HIV-1 into target cells requires binding of the viral envelope glycoprotein (Env) to cellular receptors and subsequent conformational changes that culminates in fusion of viral and target cell membranes. Recent structural information has revealed that these conformational transitions are regulated by three conserved but potentially flexible layers stacked between the receptor-binding domain (gp120) and the fusion arm (gp41) of Env. We hypothesized that artificial insertion of a covalent bond will ‘snap’ Env into a conformation that is less mobile and stably expose conserved sites. Therefore, we analyzed the interface between these gp120 layers (layers 1, 2 and 3) and identified residues that may form disulfide bonds when substituted with cysteines. We subsequently probed the structures of the resultant mutant gp120 proteins by assaying their binding to a variety of ligands using Surface Plasmon Resonance (SPR) assay. We found that a single disulfide bond strategically inserted between the highly conserved layers 1 and 2 (C65-C115) is able to ‘lock’ gp120 in a CD4 receptor bound conformation (in the absence of CD4), as indicated by the lower dissociation constant (Kd) for the CD4-induced (CD4i) epitope binding 17b antibody. When disulfide-stabilized monomeric (gp120) and trimeric (gp140) Envs were used to immunize rabbits, they were found to elicit a higher proportion of antibodies directed against both CD4i and CD4 binding site epitopes than the wild-type proteins. These results demonstrate that structure-guided stabilization of inter-layer interactions within HIV-1 Env can be used to expose conserved epitopes and potentially overcome the sequence diversity of these molecules.
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spelling pubmed-37977522013-10-21 Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein Kassa, Aemro Dey, Antu K. Sarkar, Pampi Labranche, Celia Go, Eden P. Clark, Daniel F. Sun, Yide Nandi, Avishek Hartog, Karin Desaire, Heather Montefiori, David Carfi, Andrea Srivastava, Indresh K. Barnett, Susan W. PLoS One Research Article Entry of HIV-1 into target cells requires binding of the viral envelope glycoprotein (Env) to cellular receptors and subsequent conformational changes that culminates in fusion of viral and target cell membranes. Recent structural information has revealed that these conformational transitions are regulated by three conserved but potentially flexible layers stacked between the receptor-binding domain (gp120) and the fusion arm (gp41) of Env. We hypothesized that artificial insertion of a covalent bond will ‘snap’ Env into a conformation that is less mobile and stably expose conserved sites. Therefore, we analyzed the interface between these gp120 layers (layers 1, 2 and 3) and identified residues that may form disulfide bonds when substituted with cysteines. We subsequently probed the structures of the resultant mutant gp120 proteins by assaying their binding to a variety of ligands using Surface Plasmon Resonance (SPR) assay. We found that a single disulfide bond strategically inserted between the highly conserved layers 1 and 2 (C65-C115) is able to ‘lock’ gp120 in a CD4 receptor bound conformation (in the absence of CD4), as indicated by the lower dissociation constant (Kd) for the CD4-induced (CD4i) epitope binding 17b antibody. When disulfide-stabilized monomeric (gp120) and trimeric (gp140) Envs were used to immunize rabbits, they were found to elicit a higher proportion of antibodies directed against both CD4i and CD4 binding site epitopes than the wild-type proteins. These results demonstrate that structure-guided stabilization of inter-layer interactions within HIV-1 Env can be used to expose conserved epitopes and potentially overcome the sequence diversity of these molecules. Public Library of Science 2013-10-16 /pmc/articles/PMC3797752/ /pubmed/24146829 http://dx.doi.org/10.1371/journal.pone.0076139 Text en © 2013 Kassa 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
Kassa, Aemro
Dey, Antu K.
Sarkar, Pampi
Labranche, Celia
Go, Eden P.
Clark, Daniel F.
Sun, Yide
Nandi, Avishek
Hartog, Karin
Desaire, Heather
Montefiori, David
Carfi, Andrea
Srivastava, Indresh K.
Barnett, Susan W.
Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title_full Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title_fullStr Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title_full_unstemmed Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title_short Stabilizing Exposure of Conserved Epitopes by Structure Guided Insertion of Disulfide Bond in HIV-1 Envelope Glycoprotein
title_sort stabilizing exposure of conserved epitopes by structure guided insertion of disulfide bond in hiv-1 envelope glycoprotein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3797752/
https://www.ncbi.nlm.nih.gov/pubmed/24146829
http://dx.doi.org/10.1371/journal.pone.0076139
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