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Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains

Here, we describe a new strategy that allows the rapid and efficient engineering of mono and multispecific trivalent antibodies. By fusing single-domain antibodies from camelid heavy-chain-only immunoglobulins (V(HHs)) to the N-terminus of a human collagen XVIII trimerization domain (TIE(XVIII)) we...

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Autores principales: Alvarez-Cienfuegos, Ana, Nuñez-Prado, Natalia, Compte, Marta, Cuesta, Angel M., Blanco-Toribio, Ana, Harwood, Seandean Lykke, Villate, Maider, Merino, Nekane, Bonet, Jaume, Navarro, Rocio, Muñoz-Briones, Clara, Sørensen, Karen Marie Juul, Mølgaard, Kasper, Oliva, Baldo, Sanz, Laura, Blanco, Francisco J., Alvarez-Vallina, Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921811/
https://www.ncbi.nlm.nih.gov/pubmed/27345490
http://dx.doi.org/10.1038/srep28643
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author Alvarez-Cienfuegos, Ana
Nuñez-Prado, Natalia
Compte, Marta
Cuesta, Angel M.
Blanco-Toribio, Ana
Harwood, Seandean Lykke
Villate, Maider
Merino, Nekane
Bonet, Jaume
Navarro, Rocio
Muñoz-Briones, Clara
Sørensen, Karen Marie Juul
Mølgaard, Kasper
Oliva, Baldo
Sanz, Laura
Blanco, Francisco J.
Alvarez-Vallina, Luis
author_facet Alvarez-Cienfuegos, Ana
Nuñez-Prado, Natalia
Compte, Marta
Cuesta, Angel M.
Blanco-Toribio, Ana
Harwood, Seandean Lykke
Villate, Maider
Merino, Nekane
Bonet, Jaume
Navarro, Rocio
Muñoz-Briones, Clara
Sørensen, Karen Marie Juul
Mølgaard, Kasper
Oliva, Baldo
Sanz, Laura
Blanco, Francisco J.
Alvarez-Vallina, Luis
author_sort Alvarez-Cienfuegos, Ana
collection PubMed
description Here, we describe a new strategy that allows the rapid and efficient engineering of mono and multispecific trivalent antibodies. By fusing single-domain antibodies from camelid heavy-chain-only immunoglobulins (V(HHs)) to the N-terminus of a human collagen XVIII trimerization domain (TIE(XVIII)) we produced monospecific trimerbodies that were efficiently secreted as soluble functional proteins by mammalian cells. The purified V(HH)-TIE(XVIII) trimerbodies were trimeric in solution and exhibited excellent antigen binding capacity. Furthermore, by connecting with two additional glycine-serine-based linkers three V(HH)-TIE(XVIII) modules on a single polypeptide chain, we present an approach for the rational design of multispecific tandem trimerbodies with defined stoichiometry and controlled orientation. Using this technology we report here the construction and characterization of a tandem V(HH)-based trimerbody capable of simultaneously binding to three different antigens: carcinoembryonic antigen (CEA), epidermal growth factor receptor (EGFR) and green fluorescence protein (GFP). Multispecific tandem V(HH)-based trimerbodies were well expressed in mammalian cells, had good biophysical properties and were capable of simultaneously binding their targeted antigens. Importantly, these antibodies were very effective in inhibiting the proliferation of human epidermoid carcinoma A431 cells. Multispecific V(HH)-based trimerbodies are therefore ideal candidates for future applications in various therapeutic areas.
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spelling pubmed-49218112016-06-28 Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains Alvarez-Cienfuegos, Ana Nuñez-Prado, Natalia Compte, Marta Cuesta, Angel M. Blanco-Toribio, Ana Harwood, Seandean Lykke Villate, Maider Merino, Nekane Bonet, Jaume Navarro, Rocio Muñoz-Briones, Clara Sørensen, Karen Marie Juul Mølgaard, Kasper Oliva, Baldo Sanz, Laura Blanco, Francisco J. Alvarez-Vallina, Luis Sci Rep Article Here, we describe a new strategy that allows the rapid and efficient engineering of mono and multispecific trivalent antibodies. By fusing single-domain antibodies from camelid heavy-chain-only immunoglobulins (V(HHs)) to the N-terminus of a human collagen XVIII trimerization domain (TIE(XVIII)) we produced monospecific trimerbodies that were efficiently secreted as soluble functional proteins by mammalian cells. The purified V(HH)-TIE(XVIII) trimerbodies were trimeric in solution and exhibited excellent antigen binding capacity. Furthermore, by connecting with two additional glycine-serine-based linkers three V(HH)-TIE(XVIII) modules on a single polypeptide chain, we present an approach for the rational design of multispecific tandem trimerbodies with defined stoichiometry and controlled orientation. Using this technology we report here the construction and characterization of a tandem V(HH)-based trimerbody capable of simultaneously binding to three different antigens: carcinoembryonic antigen (CEA), epidermal growth factor receptor (EGFR) and green fluorescence protein (GFP). Multispecific tandem V(HH)-based trimerbodies were well expressed in mammalian cells, had good biophysical properties and were capable of simultaneously binding their targeted antigens. Importantly, these antibodies were very effective in inhibiting the proliferation of human epidermoid carcinoma A431 cells. Multispecific V(HH)-based trimerbodies are therefore ideal candidates for future applications in various therapeutic areas. Nature Publishing Group 2016-06-27 /pmc/articles/PMC4921811/ /pubmed/27345490 http://dx.doi.org/10.1038/srep28643 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Alvarez-Cienfuegos, Ana
Nuñez-Prado, Natalia
Compte, Marta
Cuesta, Angel M.
Blanco-Toribio, Ana
Harwood, Seandean Lykke
Villate, Maider
Merino, Nekane
Bonet, Jaume
Navarro, Rocio
Muñoz-Briones, Clara
Sørensen, Karen Marie Juul
Mølgaard, Kasper
Oliva, Baldo
Sanz, Laura
Blanco, Francisco J.
Alvarez-Vallina, Luis
Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title_full Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title_fullStr Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title_full_unstemmed Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title_short Intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
title_sort intramolecular trimerization, a novel strategy for making multispecific antibodies with controlled orientation of the antigen binding domains
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921811/
https://www.ncbi.nlm.nih.gov/pubmed/27345490
http://dx.doi.org/10.1038/srep28643
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