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Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans

Viral glycoproteins are a primary target for host antibody responses. However, glycans on viral glycoproteins can hinder antibody recognition since they are self glycans derived from the host biosynthesis pathway. During natural HIV-1 infection, neutralizing antibodies are made against glycans on HI...

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Autores principales: Wu, Nelson R., Nicely, Nathan I., Lee, Esther M., Reed, Rachel K., Watts, Brian E., Cai, Fangping, Walkowicz, William E., Aussedat, Baptiste, Jones, Julia A., Eaton, Amanda, Trama, Ashley M., Alam, S. Munir, Montefiori, David C., Haynes, Barton F., Saunders, Kevin O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6936856/
https://www.ncbi.nlm.nih.gov/pubmed/31841553
http://dx.doi.org/10.1371/journal.ppat.1008165
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author Wu, Nelson R.
Nicely, Nathan I.
Lee, Esther M.
Reed, Rachel K.
Watts, Brian E.
Cai, Fangping
Walkowicz, William E.
Aussedat, Baptiste
Jones, Julia A.
Eaton, Amanda
Trama, Ashley M.
Alam, S. Munir
Montefiori, David C.
Haynes, Barton F.
Saunders, Kevin O.
author_facet Wu, Nelson R.
Nicely, Nathan I.
Lee, Esther M.
Reed, Rachel K.
Watts, Brian E.
Cai, Fangping
Walkowicz, William E.
Aussedat, Baptiste
Jones, Julia A.
Eaton, Amanda
Trama, Ashley M.
Alam, S. Munir
Montefiori, David C.
Haynes, Barton F.
Saunders, Kevin O.
author_sort Wu, Nelson R.
collection PubMed
description Viral glycoproteins are a primary target for host antibody responses. However, glycans on viral glycoproteins can hinder antibody recognition since they are self glycans derived from the host biosynthesis pathway. During natural HIV-1 infection, neutralizing antibodies are made against glycans on HIV-1 envelope glycoprotein (Env). However, such antibodies are rarely elicited with vaccination. Previously, the vaccine-induced, macaque antibody DH501 was isolated and shown to bind to high mannose glycans on HIV-1 Env. Understanding how DH501 underwent affinity maturation to recognize glycans could inform vaccine induction of HIV-1 glycan antibodies. Here, we show that DH501 Env glycan reactivity is mediated by both germline-encoded residues that contact glycans, and somatic mutations that increase antibody paratope flexibility. Only somatic mutations in the heavy chain were required for glycan reactivity. The paratope conformation was fragile as single mutations within the immunoglobulin fold or complementarity determining regions were sufficient for eliminating antibody function. Taken together, the initial germline V(H)DJ(H) rearrangement generated contact residues capable of binding glycans, and somatic mutations were required to form a flexible paratope with a cavity conducive to HIV-1 envelope glycan binding. The requirement for the presence of most somatic mutations across the heavy chain variable region provides one explanation for the difficulty in inducing anti-Env glycan antibodies with HIV-1 Env vaccination.
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spelling pubmed-69368562020-01-07 Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans Wu, Nelson R. Nicely, Nathan I. Lee, Esther M. Reed, Rachel K. Watts, Brian E. Cai, Fangping Walkowicz, William E. Aussedat, Baptiste Jones, Julia A. Eaton, Amanda Trama, Ashley M. Alam, S. Munir Montefiori, David C. Haynes, Barton F. Saunders, Kevin O. PLoS Pathog Research Article Viral glycoproteins are a primary target for host antibody responses. However, glycans on viral glycoproteins can hinder antibody recognition since they are self glycans derived from the host biosynthesis pathway. During natural HIV-1 infection, neutralizing antibodies are made against glycans on HIV-1 envelope glycoprotein (Env). However, such antibodies are rarely elicited with vaccination. Previously, the vaccine-induced, macaque antibody DH501 was isolated and shown to bind to high mannose glycans on HIV-1 Env. Understanding how DH501 underwent affinity maturation to recognize glycans could inform vaccine induction of HIV-1 glycan antibodies. Here, we show that DH501 Env glycan reactivity is mediated by both germline-encoded residues that contact glycans, and somatic mutations that increase antibody paratope flexibility. Only somatic mutations in the heavy chain were required for glycan reactivity. The paratope conformation was fragile as single mutations within the immunoglobulin fold or complementarity determining regions were sufficient for eliminating antibody function. Taken together, the initial germline V(H)DJ(H) rearrangement generated contact residues capable of binding glycans, and somatic mutations were required to form a flexible paratope with a cavity conducive to HIV-1 envelope glycan binding. The requirement for the presence of most somatic mutations across the heavy chain variable region provides one explanation for the difficulty in inducing anti-Env glycan antibodies with HIV-1 Env vaccination. Public Library of Science 2019-12-16 /pmc/articles/PMC6936856/ /pubmed/31841553 http://dx.doi.org/10.1371/journal.ppat.1008165 Text en © 2019 Wu 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wu, Nelson R.
Nicely, Nathan I.
Lee, Esther M.
Reed, Rachel K.
Watts, Brian E.
Cai, Fangping
Walkowicz, William E.
Aussedat, Baptiste
Jones, Julia A.
Eaton, Amanda
Trama, Ashley M.
Alam, S. Munir
Montefiori, David C.
Haynes, Barton F.
Saunders, Kevin O.
Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title_full Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title_fullStr Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title_full_unstemmed Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title_short Cooperation between somatic mutation and germline-encoded residues enables antibody recognition of HIV-1 envelope glycans
title_sort cooperation between somatic mutation and germline-encoded residues enables antibody recognition of hiv-1 envelope glycans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6936856/
https://www.ncbi.nlm.nih.gov/pubmed/31841553
http://dx.doi.org/10.1371/journal.ppat.1008165
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