Cargando…

Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity

Knobs-into-holes is a well-validated heterodimerization technology for the third constant domain of an antibody. This technology has been used to produce a monovalent IgG for clinical development (onartuzumab) and multiple bispecific antibodies.(1,2) The most advanced uses of this approach, however,...

Descripción completa

Detalles Bibliográficos
Autores principales: Shatz, Whitney, Chung, Shan, Li, Bing, Marshall, Brett, Tejada, Max, Phung, Wilson, Sandoval, Wendy, Kelley, Robert F, Scheer, Justin M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3896601/
https://www.ncbi.nlm.nih.gov/pubmed/23995614
http://dx.doi.org/10.4161/mabs.26307
_version_ 1782300101782274048
author Shatz, Whitney
Chung, Shan
Li, Bing
Marshall, Brett
Tejada, Max
Phung, Wilson
Sandoval, Wendy
Kelley, Robert F
Scheer, Justin M
author_facet Shatz, Whitney
Chung, Shan
Li, Bing
Marshall, Brett
Tejada, Max
Phung, Wilson
Sandoval, Wendy
Kelley, Robert F
Scheer, Justin M
author_sort Shatz, Whitney
collection PubMed
description Knobs-into-holes is a well-validated heterodimerization technology for the third constant domain of an antibody. This technology has been used to produce a monovalent IgG for clinical development (onartuzumab) and multiple bispecific antibodies.(1,2) The most advanced uses of this approach, however, have been limited to E. coli as an expression host to produce non-glycosylated antibodies. Here, we applied the technology to mammalian host expression systems to produce glycosylated, effector-function competent heterodimeric antibodies. In our mammalian host system, each arm is secreted as a heavy chain-light chain (H-L) fragment with either the knob or hole mutations to allow for preferential heterodimer formation in vitro with low levels of homodimer contaminants. Like full antibodies, the secreted H-L fragments undergo Fc glycosylation in the endoplasmic reticulum. Using a monospecific anti-CD20 antibody, we show that full antibody-dependent cell-mediated cytotoxicity (ADCC) activity can be retained in the context of a knobs-into-holes heterodimer. Because the knobs-into-holes mutations convert the Fc into an asymmetric heterodimer, this technology was further used to systematically explore asymmetric recognition of the Fc. Our results indicate that afucosylation of half the heterodimer is sufficient to produce ADCC-enhancement similar to that observed for a fully afucosylated antibody with wild-type Fc. However, the most dramatic effect on ADCC activity is observed when two carbohydrate chains are present rather than one, regardless of afucosylation state.
format Online
Article
Text
id pubmed-3896601
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Landes Bioscience
record_format MEDLINE/PubMed
spelling pubmed-38966012014-01-29 Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity Shatz, Whitney Chung, Shan Li, Bing Marshall, Brett Tejada, Max Phung, Wilson Sandoval, Wendy Kelley, Robert F Scheer, Justin M MAbs Report Knobs-into-holes is a well-validated heterodimerization technology for the third constant domain of an antibody. This technology has been used to produce a monovalent IgG for clinical development (onartuzumab) and multiple bispecific antibodies.(1,2) The most advanced uses of this approach, however, have been limited to E. coli as an expression host to produce non-glycosylated antibodies. Here, we applied the technology to mammalian host expression systems to produce glycosylated, effector-function competent heterodimeric antibodies. In our mammalian host system, each arm is secreted as a heavy chain-light chain (H-L) fragment with either the knob or hole mutations to allow for preferential heterodimer formation in vitro with low levels of homodimer contaminants. Like full antibodies, the secreted H-L fragments undergo Fc glycosylation in the endoplasmic reticulum. Using a monospecific anti-CD20 antibody, we show that full antibody-dependent cell-mediated cytotoxicity (ADCC) activity can be retained in the context of a knobs-into-holes heterodimer. Because the knobs-into-holes mutations convert the Fc into an asymmetric heterodimer, this technology was further used to systematically explore asymmetric recognition of the Fc. Our results indicate that afucosylation of half the heterodimer is sufficient to produce ADCC-enhancement similar to that observed for a fully afucosylated antibody with wild-type Fc. However, the most dramatic effect on ADCC activity is observed when two carbohydrate chains are present rather than one, regardless of afucosylation state. Landes Bioscience 2013-11-01 2013-08-29 /pmc/articles/PMC3896601/ /pubmed/23995614 http://dx.doi.org/10.4161/mabs.26307 Text en Copyright © 2013 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Shatz, Whitney
Chung, Shan
Li, Bing
Marshall, Brett
Tejada, Max
Phung, Wilson
Sandoval, Wendy
Kelley, Robert F
Scheer, Justin M
Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title_full Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title_fullStr Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title_full_unstemmed Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title_short Knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
title_sort knobs-into-holes antibody production in mammalian cell lines reveals that asymmetric afucosylation is sufficient for full antibody-dependent cellular cytotoxicity
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3896601/
https://www.ncbi.nlm.nih.gov/pubmed/23995614
http://dx.doi.org/10.4161/mabs.26307
work_keys_str_mv AT shatzwhitney knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT chungshan knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT libing knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT marshallbrett knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT tejadamax knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT phungwilson knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT sandovalwendy knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT kelleyrobertf knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity
AT scheerjustinm knobsintoholesantibodyproductioninmammaliancelllinesrevealsthatasymmetricafucosylationissufficientforfullantibodydependentcellularcytotoxicity