Cargando…

Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures

The degradation of proteins by asparagine deamidation and aspartate isomerization is one of several chemical degradation pathways for recombinant antibodies. In this study, we have identified two solvent accessible degradation sites (light chain aspartate-56 and heavy chain aspartate-99/101) in the...

Descripción completa

Detalles Bibliográficos
Autores principales: Diepold, Katharina, Bomans, Katrin, Wiedmann, Michael, Zimmermann, Boris, Petzold, Andreas, Schlothauer, Tilman, Mueller, Robert, Moritz, Bernd, Stracke, Jan Olaf, Mølhøj, Michael, Reusch, Dietmar, Bulau, Patrick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260267/
https://www.ncbi.nlm.nih.gov/pubmed/22272329
http://dx.doi.org/10.1371/journal.pone.0030295
_version_ 1782221472916307968
author Diepold, Katharina
Bomans, Katrin
Wiedmann, Michael
Zimmermann, Boris
Petzold, Andreas
Schlothauer, Tilman
Mueller, Robert
Moritz, Bernd
Stracke, Jan Olaf
Mølhøj, Michael
Reusch, Dietmar
Bulau, Patrick
author_facet Diepold, Katharina
Bomans, Katrin
Wiedmann, Michael
Zimmermann, Boris
Petzold, Andreas
Schlothauer, Tilman
Mueller, Robert
Moritz, Bernd
Stracke, Jan Olaf
Mølhøj, Michael
Reusch, Dietmar
Bulau, Patrick
author_sort Diepold, Katharina
collection PubMed
description The degradation of proteins by asparagine deamidation and aspartate isomerization is one of several chemical degradation pathways for recombinant antibodies. In this study, we have identified two solvent accessible degradation sites (light chain aspartate-56 and heavy chain aspartate-99/101) in the complementary-determining regions of a recombinant IgG1 antibody susceptible to isomerization under elevated temperature conditions. For both hot-spots, the degree of isomerization was found to be significantly higher than the deamidation of asparagine-(387, 392, 393) in the conserved CH3 region, which has been identified as being solvent accessible and sensitive to chemical degradation in previous studies. In order to reduce the time for simultaneous identification and functional evaluation of potential asparagine deamidation and aspartate isomerization sites, a test system employing accelerated temperature conditions and proteolytic peptide mapping combined with quantitative UPLC-MS was developed. This method occupies the formulation buffer system histidine/HCl (20 mM; pH 6.0) for denaturation/reduction/digestion and eliminates the alkylation step. The achieved degree of asparagine deamidation and aspartate isomerization was adequate to identify the functional consequence by binding studies. In summary, the here presented approach greatly facilitates the evaluation of fermentation, purification, formulation, and storage conditions on antibody asparagine deamidation and aspartate isomerization by monitoring susceptible marker peptides located in the complementary-determining regions of recombinant antibodies.
format Online
Article
Text
id pubmed-3260267
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32602672012-01-23 Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures Diepold, Katharina Bomans, Katrin Wiedmann, Michael Zimmermann, Boris Petzold, Andreas Schlothauer, Tilman Mueller, Robert Moritz, Bernd Stracke, Jan Olaf Mølhøj, Michael Reusch, Dietmar Bulau, Patrick PLoS One Research Article The degradation of proteins by asparagine deamidation and aspartate isomerization is one of several chemical degradation pathways for recombinant antibodies. In this study, we have identified two solvent accessible degradation sites (light chain aspartate-56 and heavy chain aspartate-99/101) in the complementary-determining regions of a recombinant IgG1 antibody susceptible to isomerization under elevated temperature conditions. For both hot-spots, the degree of isomerization was found to be significantly higher than the deamidation of asparagine-(387, 392, 393) in the conserved CH3 region, which has been identified as being solvent accessible and sensitive to chemical degradation in previous studies. In order to reduce the time for simultaneous identification and functional evaluation of potential asparagine deamidation and aspartate isomerization sites, a test system employing accelerated temperature conditions and proteolytic peptide mapping combined with quantitative UPLC-MS was developed. This method occupies the formulation buffer system histidine/HCl (20 mM; pH 6.0) for denaturation/reduction/digestion and eliminates the alkylation step. The achieved degree of asparagine deamidation and aspartate isomerization was adequate to identify the functional consequence by binding studies. In summary, the here presented approach greatly facilitates the evaluation of fermentation, purification, formulation, and storage conditions on antibody asparagine deamidation and aspartate isomerization by monitoring susceptible marker peptides located in the complementary-determining regions of recombinant antibodies. Public Library of Science 2012-01-17 /pmc/articles/PMC3260267/ /pubmed/22272329 http://dx.doi.org/10.1371/journal.pone.0030295 Text en Diepold et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Diepold, Katharina
Bomans, Katrin
Wiedmann, Michael
Zimmermann, Boris
Petzold, Andreas
Schlothauer, Tilman
Mueller, Robert
Moritz, Bernd
Stracke, Jan Olaf
Mølhøj, Michael
Reusch, Dietmar
Bulau, Patrick
Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title_full Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title_fullStr Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title_full_unstemmed Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title_short Simultaneous Assessment of Asp Isomerization and Asn Deamidation in Recombinant Antibodies by LC-MS following Incubation at Elevated Temperatures
title_sort simultaneous assessment of asp isomerization and asn deamidation in recombinant antibodies by lc-ms following incubation at elevated temperatures
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260267/
https://www.ncbi.nlm.nih.gov/pubmed/22272329
http://dx.doi.org/10.1371/journal.pone.0030295
work_keys_str_mv AT diepoldkatharina simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT bomanskatrin simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT wiedmannmichael simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT zimmermannboris simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT petzoldandreas simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT schlothauertilman simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT muellerrobert simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT moritzbernd simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT strackejanolaf simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT mølhøjmichael simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT reuschdietmar simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures
AT bulaupatrick simultaneousassessmentofaspisomerizationandasndeamidationinrecombinantantibodiesbylcmsfollowingincubationatelevatedtemperatures