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Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM

Immunoglobulins M (IgMs) are gaining increasing attention as biopharmaceuticals since their multivalent mode of binding can give rise to high avidity. Furthermore, IgMs are potent activators of the complement system. However, they are frequently difficult to express recombinantly and can suffer from...

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Autores principales: Chromikova, Veronika, Mader, Alexander, Hofbauer, Stefan, Göbl, Christoph, Madl, Tobias, Gach, Johannes S., Bauernfried, Stefan, Furtmüller, Paul G., Forthal, Donald N., Mach, Lukas, Obinger, Christian, Kunert, Renate
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Pub. Co 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4582045/
https://www.ncbi.nlm.nih.gov/pubmed/25748881
http://dx.doi.org/10.1016/j.bbapap.2015.02.018
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author Chromikova, Veronika
Mader, Alexander
Hofbauer, Stefan
Göbl, Christoph
Madl, Tobias
Gach, Johannes S.
Bauernfried, Stefan
Furtmüller, Paul G.
Forthal, Donald N.
Mach, Lukas
Obinger, Christian
Kunert, Renate
author_facet Chromikova, Veronika
Mader, Alexander
Hofbauer, Stefan
Göbl, Christoph
Madl, Tobias
Gach, Johannes S.
Bauernfried, Stefan
Furtmüller, Paul G.
Forthal, Donald N.
Mach, Lukas
Obinger, Christian
Kunert, Renate
author_sort Chromikova, Veronika
collection PubMed
description Immunoglobulins M (IgMs) are gaining increasing attention as biopharmaceuticals since their multivalent mode of binding can give rise to high avidity. Furthermore, IgMs are potent activators of the complement system. However, they are frequently difficult to express recombinantly and can suffer from low conformational stability. Here, the broadly neutralizing anti-HIV-1 antibody 2G12 was class-switched to IgM and then further engineered by introduction of 17 germline residues. The impact of these changes on the structure and conformational stability of the antibody was then assessed using a range of biophysical techniques. We also investigated the effects of the class switch and germline substitutions on the ligand-binding properties of 2G12 and its capacity for HIV-1 neutralization. Our results demonstrate that the introduced germline residues improve the conformational and thermal stability of 2G12-IgM without altering its overall shape and ligand-binding properties. Interestingly, the engineered protein was found to exhibit much lower neutralization potency than its wild-type counterpart, indicating that potent antigen recognition is not solely responsible for IgM-mediated HIV-1 inactivation.
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spelling pubmed-45820452015-10-27 Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM Chromikova, Veronika Mader, Alexander Hofbauer, Stefan Göbl, Christoph Madl, Tobias Gach, Johannes S. Bauernfried, Stefan Furtmüller, Paul G. Forthal, Donald N. Mach, Lukas Obinger, Christian Kunert, Renate Biochim Biophys Acta Article Immunoglobulins M (IgMs) are gaining increasing attention as biopharmaceuticals since their multivalent mode of binding can give rise to high avidity. Furthermore, IgMs are potent activators of the complement system. However, they are frequently difficult to express recombinantly and can suffer from low conformational stability. Here, the broadly neutralizing anti-HIV-1 antibody 2G12 was class-switched to IgM and then further engineered by introduction of 17 germline residues. The impact of these changes on the structure and conformational stability of the antibody was then assessed using a range of biophysical techniques. We also investigated the effects of the class switch and germline substitutions on the ligand-binding properties of 2G12 and its capacity for HIV-1 neutralization. Our results demonstrate that the introduced germline residues improve the conformational and thermal stability of 2G12-IgM without altering its overall shape and ligand-binding properties. Interestingly, the engineered protein was found to exhibit much lower neutralization potency than its wild-type counterpart, indicating that potent antigen recognition is not solely responsible for IgM-mediated HIV-1 inactivation. Elsevier Pub. Co 2015-10 /pmc/articles/PMC4582045/ /pubmed/25748881 http://dx.doi.org/10.1016/j.bbapap.2015.02.018 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chromikova, Veronika
Mader, Alexander
Hofbauer, Stefan
Göbl, Christoph
Madl, Tobias
Gach, Johannes S.
Bauernfried, Stefan
Furtmüller, Paul G.
Forthal, Donald N.
Mach, Lukas
Obinger, Christian
Kunert, Renate
Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title_full Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title_fullStr Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title_full_unstemmed Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title_short Introduction of germline residues improves the stability of anti-HIV mAb 2G12-IgM
title_sort introduction of germline residues improves the stability of anti-hiv mab 2g12-igm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4582045/
https://www.ncbi.nlm.nih.gov/pubmed/25748881
http://dx.doi.org/10.1016/j.bbapap.2015.02.018
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