Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.

Recombinant production of IgM antibodies poses a special challenge due to the complex structure of the proteins and their not yet fully elucidated interactions with the immune effector proteins, especially the complement system. In this study, we present transient expression of IgM antibodies (IgM61...

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Main Authors: Julia Hennicke, Linda Schwaigerlehner, Clemens Grünwald-Gruber, Isabelle Bally, Wai Li Ling, Nicole Thielens, Jean-Baptiste Reiser, Renate Kunert
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0229992
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spelling doaj-3eeb23ce4856449388769410bb7ab5ec2021-03-03T21:35:12ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01153e022999210.1371/journal.pone.0229992Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.Julia HennickeLinda SchwaigerlehnerClemens Grünwald-GruberIsabelle BallyWai Li LingNicole ThielensJean-Baptiste ReiserRenate KunertRecombinant production of IgM antibodies poses a special challenge due to the complex structure of the proteins and their not yet fully elucidated interactions with the immune effector proteins, especially the complement system. In this study, we present transient expression of IgM antibodies (IgM617, IgM012 and IgM012_GL) in HEK cells and compared it to the well-established stable expression system in CHO cells. The presented workflow investigates quality attributes including productivity, polymer distribution, glycosylation, antibody structure and activation of the classical complement pathway. The HEK293E transient expression system is able to generate comparable amounts and polymer distribution as IgM stably produced in CHO. Although the glycan profile generated by HEK293E cells contained a lower degree of sialylation and a higher portion of oligomannose structures, the potency to activate the complement cascade was maintained. Electron microscopy also confirmed the structural integrity of IgM pentamers produced in HEK293E cells, since the conventional star-shaped structure is observed. From our studies, we conclude that the transient expression system provides an attractive alternative for rapid, efficient and high-throughput production of complex IgM antibodies with slightly altered post-translational modifications, but comparable structure and function.https://doi.org/10.1371/journal.pone.0229992
collection DOAJ
language English
format Article
sources DOAJ
author Julia Hennicke
Linda Schwaigerlehner
Clemens Grünwald-Gruber
Isabelle Bally
Wai Li Ling
Nicole Thielens
Jean-Baptiste Reiser
Renate Kunert
spellingShingle Julia Hennicke
Linda Schwaigerlehner
Clemens Grünwald-Gruber
Isabelle Bally
Wai Li Ling
Nicole Thielens
Jean-Baptiste Reiser
Renate Kunert
Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
PLoS ONE
author_facet Julia Hennicke
Linda Schwaigerlehner
Clemens Grünwald-Gruber
Isabelle Bally
Wai Li Ling
Nicole Thielens
Jean-Baptiste Reiser
Renate Kunert
author_sort Julia Hennicke
title Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
title_short Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
title_full Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
title_fullStr Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
title_full_unstemmed Transient pentameric IgM fulfill biological function-Effect of expression host and transfection on IgM properties.
title_sort transient pentameric igm fulfill biological function-effect of expression host and transfection on igm properties.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Recombinant production of IgM antibodies poses a special challenge due to the complex structure of the proteins and their not yet fully elucidated interactions with the immune effector proteins, especially the complement system. In this study, we present transient expression of IgM antibodies (IgM617, IgM012 and IgM012_GL) in HEK cells and compared it to the well-established stable expression system in CHO cells. The presented workflow investigates quality attributes including productivity, polymer distribution, glycosylation, antibody structure and activation of the classical complement pathway. The HEK293E transient expression system is able to generate comparable amounts and polymer distribution as IgM stably produced in CHO. Although the glycan profile generated by HEK293E cells contained a lower degree of sialylation and a higher portion of oligomannose structures, the potency to activate the complement cascade was maintained. Electron microscopy also confirmed the structural integrity of IgM pentamers produced in HEK293E cells, since the conventional star-shaped structure is observed. From our studies, we conclude that the transient expression system provides an attractive alternative for rapid, efficient and high-throughput production of complex IgM antibodies with slightly altered post-translational modifications, but comparable structure and function.
url https://doi.org/10.1371/journal.pone.0229992
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