Cargando…

Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry

[Image: see text] Qualitative and quantitative mass analysis of antibodies and related macromolecular immune complexes is a prerequisite for determining their identity, binding partners, stoichiometries, and affinities. A plethora of bioanalytical technologies exist to determine such characteristics...

Descripción completa

Detalles Bibliográficos
Autores principales: den Boer, Maurits A., Lai, Szu-Hsueh, Xue, Xiaoguang, van Kampen, Muriel D., Bleijlevens, Boris, Heck, Albert J. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8771642/
https://www.ncbi.nlm.nih.gov/pubmed/34939405
http://dx.doi.org/10.1021/acs.analchem.1c03656
_version_ 1784635653686820864
author den Boer, Maurits A.
Lai, Szu-Hsueh
Xue, Xiaoguang
van Kampen, Muriel D.
Bleijlevens, Boris
Heck, Albert J. R.
author_facet den Boer, Maurits A.
Lai, Szu-Hsueh
Xue, Xiaoguang
van Kampen, Muriel D.
Bleijlevens, Boris
Heck, Albert J. R.
author_sort den Boer, Maurits A.
collection PubMed
description [Image: see text] Qualitative and quantitative mass analysis of antibodies and related macromolecular immune complexes is a prerequisite for determining their identity, binding partners, stoichiometries, and affinities. A plethora of bioanalytical technologies exist to determine such characteristics, typically based on size, interaction with functionalized surfaces, light scattering, or direct mass measurements. While these methods are highly complementary, they also exhibit unique strengths and weaknesses. Here, we benchmark mass photometry (MP), a recently introduced technology for mass measurement, against native mass spectrometry (MS) and size exclusion chromatography multi-angle light scattering (SEC-MALS). We examine samples of variable complexity, namely, IgG4Δhinge dimerizing half-bodies, IgG-RGY hexamers, heterogeneously glycosylated IgG:sEGFR antibody–antigen complexes, and finally megadalton assemblies involved in complement activation. We thereby assess the ability to determine (1) binding affinities and stoichiometries, (2) accurate masses, for extensively glycosylated species, and (3) assembly pathways of large heterogeneous immune complexes. We find that MP provides a sensitive approach for characterizing antibodies and stable assemblies, with dissociation correction enabling us to expand the measurable affinity range. In terms of mass resolution and accuracy, native MS performs the best but is occasionally hampered by artifacts induced by electrospray ionization, and its resolving power diminishes when analyzing extensively glycosylated proteins. In the latter cases, MP performs well, but single-particle charge detection MS can also be useful in this respect, measuring masses of heterogeneous assemblies even more accurately. Both methods perform well compared to SEC-MALS, still being the most established method in biopharma. Together, our data highlight the complementarity of these approaches, each having its unique strengths and weaknesses.
format Online
Article
Text
id pubmed-8771642
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-87716422022-01-21 Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry den Boer, Maurits A. Lai, Szu-Hsueh Xue, Xiaoguang van Kampen, Muriel D. Bleijlevens, Boris Heck, Albert J. R. Anal Chem [Image: see text] Qualitative and quantitative mass analysis of antibodies and related macromolecular immune complexes is a prerequisite for determining their identity, binding partners, stoichiometries, and affinities. A plethora of bioanalytical technologies exist to determine such characteristics, typically based on size, interaction with functionalized surfaces, light scattering, or direct mass measurements. While these methods are highly complementary, they also exhibit unique strengths and weaknesses. Here, we benchmark mass photometry (MP), a recently introduced technology for mass measurement, against native mass spectrometry (MS) and size exclusion chromatography multi-angle light scattering (SEC-MALS). We examine samples of variable complexity, namely, IgG4Δhinge dimerizing half-bodies, IgG-RGY hexamers, heterogeneously glycosylated IgG:sEGFR antibody–antigen complexes, and finally megadalton assemblies involved in complement activation. We thereby assess the ability to determine (1) binding affinities and stoichiometries, (2) accurate masses, for extensively glycosylated species, and (3) assembly pathways of large heterogeneous immune complexes. We find that MP provides a sensitive approach for characterizing antibodies and stable assemblies, with dissociation correction enabling us to expand the measurable affinity range. In terms of mass resolution and accuracy, native MS performs the best but is occasionally hampered by artifacts induced by electrospray ionization, and its resolving power diminishes when analyzing extensively glycosylated proteins. In the latter cases, MP performs well, but single-particle charge detection MS can also be useful in this respect, measuring masses of heterogeneous assemblies even more accurately. Both methods perform well compared to SEC-MALS, still being the most established method in biopharma. Together, our data highlight the complementarity of these approaches, each having its unique strengths and weaknesses. American Chemical Society 2021-12-23 2022-01-18 /pmc/articles/PMC8771642/ /pubmed/34939405 http://dx.doi.org/10.1021/acs.analchem.1c03656 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle den Boer, Maurits A.
Lai, Szu-Hsueh
Xue, Xiaoguang
van Kampen, Muriel D.
Bleijlevens, Boris
Heck, Albert J. R.
Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title_full Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title_fullStr Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title_full_unstemmed Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title_short Comparative Analysis of Antibodies and Heavily Glycosylated Macromolecular Immune Complexes by Size-Exclusion Chromatography Multi-Angle Light Scattering, Native Charge Detection Mass Spectrometry, and Mass Photometry
title_sort comparative analysis of antibodies and heavily glycosylated macromolecular immune complexes by size-exclusion chromatography multi-angle light scattering, native charge detection mass spectrometry, and mass photometry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8771642/
https://www.ncbi.nlm.nih.gov/pubmed/34939405
http://dx.doi.org/10.1021/acs.analchem.1c03656
work_keys_str_mv AT denboermauritsa comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry
AT laiszuhsueh comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry
AT xuexiaoguang comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry
AT vankampenmurield comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry
AT bleijlevensboris comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry
AT heckalbertjr comparativeanalysisofantibodiesandheavilyglycosylatedmacromolecularimmunecomplexesbysizeexclusionchromatographymultianglelightscatteringnativechargedetectionmassspectrometryandmassphotometry