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NMR Detection of Semi-Specific Antibody Interactions in Serum Environments

Although antibody functions are executed in heterogeneous blood streams characterized by molecular crowding and promiscuous intermolecular interaction, detailed structural characterizations of antibody interactions have thus far been performed under homogeneous in vitro conditions. NMR spectroscopy...

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Detalles Bibliográficos
Autores principales: Yanaka, Saeko, Yamazaki, Toshio, Yogo, Rina, Noda, Masanori, Uchiyama, Susumu, Yagi, Hirokazu, Kato, Koichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151507/
https://www.ncbi.nlm.nih.gov/pubmed/28953258
http://dx.doi.org/10.3390/molecules22101619
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author Yanaka, Saeko
Yamazaki, Toshio
Yogo, Rina
Noda, Masanori
Uchiyama, Susumu
Yagi, Hirokazu
Kato, Koichi
author_facet Yanaka, Saeko
Yamazaki, Toshio
Yogo, Rina
Noda, Masanori
Uchiyama, Susumu
Yagi, Hirokazu
Kato, Koichi
author_sort Yanaka, Saeko
collection PubMed
description Although antibody functions are executed in heterogeneous blood streams characterized by molecular crowding and promiscuous intermolecular interaction, detailed structural characterizations of antibody interactions have thus far been performed under homogeneous in vitro conditions. NMR spectroscopy potentially has the ability to study protein structures in heterogeneous environments, assuming that the target protein can be labeled with NMR-active isotopes. Based on our successful development of isotope labeling of antibody glycoproteins, here we apply NMR spectroscopy to characterize antibody interactions in heterogeneous extracellular environments using mouse IgG-Fc as a test molecule. In human serum, many of the HSQC peaks originating from the Fc backbone exhibited attenuation in intensity of various magnitudes. Similar spectral changes were induced by the Fab fragment of polyclonal IgG isolated from the serum, but not by serum albumin, indicating that a subset of antibodies reactive with mouse IgG-Fc exists in human serum without preimmunization. The metaepitopes recognized by serum polyclonal IgG cover the entire molecular surface of Fc, including the binding sites to Fc receptors and C1q. In-serum NMR observation will offer useful tools for the detailed characterization of biopharamaceuticals, including therapeutic antibodies in physiologically relevant heterogeneous environments, also giving deeper insight into molecular recognition by polyclonal antibodies in the immune system.
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spelling pubmed-61515072018-11-13 NMR Detection of Semi-Specific Antibody Interactions in Serum Environments Yanaka, Saeko Yamazaki, Toshio Yogo, Rina Noda, Masanori Uchiyama, Susumu Yagi, Hirokazu Kato, Koichi Molecules Article Although antibody functions are executed in heterogeneous blood streams characterized by molecular crowding and promiscuous intermolecular interaction, detailed structural characterizations of antibody interactions have thus far been performed under homogeneous in vitro conditions. NMR spectroscopy potentially has the ability to study protein structures in heterogeneous environments, assuming that the target protein can be labeled with NMR-active isotopes. Based on our successful development of isotope labeling of antibody glycoproteins, here we apply NMR spectroscopy to characterize antibody interactions in heterogeneous extracellular environments using mouse IgG-Fc as a test molecule. In human serum, many of the HSQC peaks originating from the Fc backbone exhibited attenuation in intensity of various magnitudes. Similar spectral changes were induced by the Fab fragment of polyclonal IgG isolated from the serum, but not by serum albumin, indicating that a subset of antibodies reactive with mouse IgG-Fc exists in human serum without preimmunization. The metaepitopes recognized by serum polyclonal IgG cover the entire molecular surface of Fc, including the binding sites to Fc receptors and C1q. In-serum NMR observation will offer useful tools for the detailed characterization of biopharamaceuticals, including therapeutic antibodies in physiologically relevant heterogeneous environments, also giving deeper insight into molecular recognition by polyclonal antibodies in the immune system. MDPI 2017-09-27 /pmc/articles/PMC6151507/ /pubmed/28953258 http://dx.doi.org/10.3390/molecules22101619 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yanaka, Saeko
Yamazaki, Toshio
Yogo, Rina
Noda, Masanori
Uchiyama, Susumu
Yagi, Hirokazu
Kato, Koichi
NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title_full NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title_fullStr NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title_full_unstemmed NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title_short NMR Detection of Semi-Specific Antibody Interactions in Serum Environments
title_sort nmr detection of semi-specific antibody interactions in serum environments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6151507/
https://www.ncbi.nlm.nih.gov/pubmed/28953258
http://dx.doi.org/10.3390/molecules22101619
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