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Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation

The human immunodeficiency virus type 1 (HIV-1) envelope (Env) trimer evades antibody recognition by adopting a closed prefusion conformation. Here, we show that two conserved tyrosines (Y173, Y177) within the second variable (V2) loop of the gp120 Env glycoprotein are key regulators of the closed,...

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Autores principales: Guzzo, Christina, Zhang, Peng, Liu, Qingbo, Kwon, Alice L., Uddin, Ferzan, Wells, Alexandra I., Schmeisser, Hana, Cimbro, Raffaello, Huang, Jinghe, Doria-Rose, Nicole, Schmidt, Stephen D., Dolan, Michael A., Connors, Mark, Mascola, John R., Lusso, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6299476/
https://www.ncbi.nlm.nih.gov/pubmed/30538178
http://dx.doi.org/10.1128/mBio.00955-18
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author Guzzo, Christina
Zhang, Peng
Liu, Qingbo
Kwon, Alice L.
Uddin, Ferzan
Wells, Alexandra I.
Schmeisser, Hana
Cimbro, Raffaello
Huang, Jinghe
Doria-Rose, Nicole
Schmidt, Stephen D.
Dolan, Michael A.
Connors, Mark
Mascola, John R.
Lusso, Paolo
author_facet Guzzo, Christina
Zhang, Peng
Liu, Qingbo
Kwon, Alice L.
Uddin, Ferzan
Wells, Alexandra I.
Schmeisser, Hana
Cimbro, Raffaello
Huang, Jinghe
Doria-Rose, Nicole
Schmidt, Stephen D.
Dolan, Michael A.
Connors, Mark
Mascola, John R.
Lusso, Paolo
author_sort Guzzo, Christina
collection PubMed
description The human immunodeficiency virus type 1 (HIV-1) envelope (Env) trimer evades antibody recognition by adopting a closed prefusion conformation. Here, we show that two conserved tyrosines (Y173, Y177) within the second variable (V2) loop of the gp120 Env glycoprotein are key regulators of the closed, antibody-protected state of the trimer by establishing intramolecular interaction with the base of the third variable (V3) loop. Mutation of Y177 and/or Y173 to phenylalanine or alanine dramatically altered the susceptibility of diverse HIV-1 strains to neutralization, increasing sensitivity to weakly and nonneutralizing antibodies directed against diverse Env regions, consistent with the adoption of an open trimer configuration. Conversely, potent broadly neutralizing antibodies (bNAbs) against different supersites of HIV-1 vulnerability exhibited reduced potency against V2 loop tyrosine mutants, consistent with their preferential targeting of the closed trimer. Mutation of V3 loop residues predicted to interact with the V2 loop tyrosines yielded a similar neutralization phenotype. Sera from chronically HIV-1-infected patients contained very high titers of antibodies capable of neutralizing V2 loop tyrosine mutants but not wild-type viruses, indicating that the bulk of antibodies produced in infected hosts are unable to penetrate the protective shield of the closed trimer. These results identify the tyrosine-mediated V2-V3 loop complex at the trimer apex as a key structural constraint that facilitates HIV-1 evasion from the bulk of host antibodies.
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spelling pubmed-62994762018-12-28 Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation Guzzo, Christina Zhang, Peng Liu, Qingbo Kwon, Alice L. Uddin, Ferzan Wells, Alexandra I. Schmeisser, Hana Cimbro, Raffaello Huang, Jinghe Doria-Rose, Nicole Schmidt, Stephen D. Dolan, Michael A. Connors, Mark Mascola, John R. Lusso, Paolo mBio Research Article The human immunodeficiency virus type 1 (HIV-1) envelope (Env) trimer evades antibody recognition by adopting a closed prefusion conformation. Here, we show that two conserved tyrosines (Y173, Y177) within the second variable (V2) loop of the gp120 Env glycoprotein are key regulators of the closed, antibody-protected state of the trimer by establishing intramolecular interaction with the base of the third variable (V3) loop. Mutation of Y177 and/or Y173 to phenylalanine or alanine dramatically altered the susceptibility of diverse HIV-1 strains to neutralization, increasing sensitivity to weakly and nonneutralizing antibodies directed against diverse Env regions, consistent with the adoption of an open trimer configuration. Conversely, potent broadly neutralizing antibodies (bNAbs) against different supersites of HIV-1 vulnerability exhibited reduced potency against V2 loop tyrosine mutants, consistent with their preferential targeting of the closed trimer. Mutation of V3 loop residues predicted to interact with the V2 loop tyrosines yielded a similar neutralization phenotype. Sera from chronically HIV-1-infected patients contained very high titers of antibodies capable of neutralizing V2 loop tyrosine mutants but not wild-type viruses, indicating that the bulk of antibodies produced in infected hosts are unable to penetrate the protective shield of the closed trimer. These results identify the tyrosine-mediated V2-V3 loop complex at the trimer apex as a key structural constraint that facilitates HIV-1 evasion from the bulk of host antibodies. American Society for Microbiology 2018-12-11 /pmc/articles/PMC6299476/ /pubmed/30538178 http://dx.doi.org/10.1128/mBio.00955-18 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1 This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply.
spellingShingle Research Article
Guzzo, Christina
Zhang, Peng
Liu, Qingbo
Kwon, Alice L.
Uddin, Ferzan
Wells, Alexandra I.
Schmeisser, Hana
Cimbro, Raffaello
Huang, Jinghe
Doria-Rose, Nicole
Schmidt, Stephen D.
Dolan, Michael A.
Connors, Mark
Mascola, John R.
Lusso, Paolo
Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title_full Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title_fullStr Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title_full_unstemmed Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title_short Structural Constraints at the Trimer Apex Stabilize the HIV-1 Envelope in a Closed, Antibody-Protected Conformation
title_sort structural constraints at the trimer apex stabilize the hiv-1 envelope in a closed, antibody-protected conformation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6299476/
https://www.ncbi.nlm.nih.gov/pubmed/30538178
http://dx.doi.org/10.1128/mBio.00955-18
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