High-Resolution Demultiplexing (HRdm) Ion Mobility Spectrometry-Mass Spectrometry for Aspartic and Isoaspartic Acid Determination and Screening

被引:22
作者
Butler, Karen E. [1 ]
Dodds, James N. [1 ]
Flick, Tawnya [2 ]
Campuzano, Iain D. G. [3 ]
Baker, Erin S. [1 ,4 ,5 ]
机构
[1] North Carolina State Univ, Dept Chem, Raleigh, NC 27695 USA
[2] Amgen Proc Dev, Pivotal Attribute Sci, Thousand Oaks, CA 91320 USA
[3] Amgen Res, Discovery Attribute Sci, Thousand Oaks, CA 91320 USA
[4] North Carolina State Univ, Ctr Human Hlth & Environm, Raleigh, NC 27695 USA
[5] North Carolina State Univ, Environm & Comparat Med Inst, Raleigh, NC 27695 USA
基金
美国国家卫生研究院;
关键词
MULTIATTRIBUTE METHOD; PROTEINS; THROUGHPUT; PEPTIDES; IDENTIFICATION; DEAMIDATION; ASPARAGINE; RESIDUES; ANTIBODY; ISOMERIZATION;
D O I
10.1021/acs.analchem.1c05533
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Isomeric peptide analyses are an analytical challenge of great importance to therapeutic monoclonal antibody and other biotherapeutic product development workflows. Aspartic acid (Asp, D) to isoaspartic acid (isoAsp, isoD) isomerization is a critical quality attribute (CQA) that requires careful control, monitoring, and quantitation during the drug discovery and production processes. While the formation of isoAsp has been implicated in a variety of disease states such as autoimmune diseases and several types of cancer, it is also understood that the formation of isoAsp results in a structural change impacting efficacy, potency, and immunogenic properties, all of which are undesirable. Currently, lengthy ultrahigh-performance liquid chromatography (UPLC) separations are coupled with MS for CQA analyses; however, these measurements often take over an hour and drastically limit analysis throughput. In this manuscript, drift tube ion mobility spectrometry-mass spectrometry (DTIMS-MS) and both a standard and high-resolution demultiplexing approach were utilized to study eight isomeric Asp and isoAsp peptide pairs. While the limited resolving power associated with the standard DTIMS analysis only separated three of the eight pairs, the application of HRdm distinguished seven of the eight and was only unable to separate DL and isoDL. The rapid high-throughput HRdm DTIMS-MS method was also interfaced with both flow injection and an automated solid phase extraction system to present the first application of HRdm for isoAsp and Asp assessment and demonstrate screening capabilities for isomeric peptides in complex samples, resulting in a workflow highly suitable for biopharmaceutical research needs.
引用
收藏
页码:6191 / 6199
页数:9
相关论文
共 57 条
[1]   Skyline for Small Molecules: A Unifying Software Package for Quantitative Metabolomics [J].
Adams, Kendra J. ;
Pratt, Brian ;
Bose, Neelanjan ;
Dubois, Laura G. ;
St John-Williams, Lisa ;
Perrott, Kevin M. ;
Ky, Karina ;
Kapahi, Pankaj ;
Sharma, Vagisha ;
MacCoss, Michael J. ;
Moseley, M. Arthur ;
Colton, Carol A. ;
MacLean, Brendan X. ;
Schilling, Birgit ;
Thompson, J. Will .
JOURNAL OF PROTEOME RESEARCH, 2020, 19 (04) :1447-1458
[2]   Isoaspartate in peptides and proteins: formation, significance, and analysis [J].
Aswad, DW ;
Paranandi, MV ;
Schurter, BT .
JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2000, 21 (06) :1129-1136
[3]   Gas Phase Ion Chemistry to Determine Isoaspartate in a Peptide Backbone [J].
Ayrton, S. T. ;
Chen, X. ;
Bain, R. M. ;
Pulliam, C. J. ;
Achmatowicz, M. ;
Flick, T. G. ;
Ren, D. ;
Cooks, R. G. .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2018, 29 (07) :1339-1344
[4]   Predicting Antibody Developability Profiles Through Early Stage Discovery Screening [J].
Bailly, Marc ;
Mieczkowski, Carl ;
Juan, Veronica ;
Metwally, Essam ;
Tomazela, Daniela ;
Baker, Jeanne ;
Uchida, Makiko ;
Kofman, Ester ;
Raoufi, Fahimeh ;
Motlagh, Soha ;
Yu, Yao ;
Park, Jihea ;
Raghava, Smita ;
Welsh, John ;
Rauscher, Michael ;
Raghunathan, Gopalan ;
Hsieh, Mark ;
Chen, Yi-Ling ;
Nguyen, Hang Thu ;
Nguyen, Nhung ;
Cipriano, Dan ;
Fayadat-Dilman, Laurence .
MABS, 2020, 12 (01)
[5]   A Preprocessing Tool for Enhanced Ion Mobility-Mass Spectrometry-Based Omics Workflows [J].
Bilbao, Aivett ;
Gibbons, Bryson C. ;
Stow, Sarah M. ;
Kyle, Jennifer E. ;
Bloodsworth, Kent J. ;
Payne, Samuel H. ;
Smith, Richard D. ;
Ibrahim, Yehia M. ;
Baker, Erin S. ;
Fjeldsted, John C. .
JOURNAL OF PROTEOME RESEARCH, 2022, 21 (03) :798-807
[6]   Isomerization of an aspartic acid residue in the complementarity-determining regions of a recombinant antibody to human IgE: Identification and effect on binding affinity [J].
Cacia, J ;
Keck, R ;
Presta, LG ;
Frenz, J .
BIOCHEMISTRY, 1996, 35 (06) :1897-1903
[7]   Ion mobility in the pharmaceutical industry: an established biophysical technique or still niche? [J].
Campuzano, Iain D. G. ;
Lippens, Jennifer L. .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2018, 42 :147-159
[8]   High-Throughput Mass Spectrometric Analysis of Covalent Protein-Inhibitor Adducts for the Discovery of Irreversible Inhibitors: A Complete Workflow [J].
Campuzano, Iain D. G. ;
Miguel, Tisha San ;
Rowe, Todd ;
Onea, Daniel ;
Cee, Victor J. ;
Arvedson, Tara ;
McCarter, John D. .
JOURNAL OF BIOMOLECULAR SCREENING, 2016, 21 (02) :136-144
[9]   Experimental and Theoretical Investigation of Sodiated Multimers of Steroid Epimers with Ion Mobility-Mass Spectrometry [J].
Chouinard, Christopher D. ;
Cruzeiro, Vinicius Wilian D. ;
Roitberg, Adrian E. ;
Yost, Richard A. .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2017, 28 (02) :323-331
[10]   Quantitating the relative abundance of isoaspartyl residues in deamidated proteins by electron capture dissociation [J].
Cournoyer, Jason J. ;
Lin, Cheng ;
Bowman, Michael J. ;
O'Connor, Peter B. .
JOURNAL OF THE AMERICAN SOCIETY FOR MASS SPECTROMETRY, 2007, 18 (01) :48-56