AI Article Synopsis

  • Chemical changes in therapeutic proteins, especially in binding regions due to stress, can impact their ability to effectively target and bind to proteins like HER2.
  • The study used size-exclusion chromatography (SEC) to analyze how stressed antibodies interact with HER2, revealing that certain modifications led to unbound antibodies when the receptor concentration was altered.
  • Key findings indicated that specific modifications, such as D102 isomerization and N30 deamidation, were significantly higher in unbound antibodies, highlighting their importance in antibody-target binding dynamics.

Article Abstract

Chemical modifications (attributes) in the binding regions of stressed therapeutic proteins may affect binding to target and efficacy of therapeutic proteins. The method presented here describes the criticality assessment of therapeutic antibody modifications by size-exclusion chromatography (SEC) of competitive binding between a stressed antibody and its target, human epidermal growth factor receptor-2 (HER2), followed by SEC fractionation and peptide mapping characterization of bound and unbound antibodies. When stressed antibody and its target were mixed at a stoichiometric molar ratio of 1:2, only antibody-receptor complex eluted from SEC, indicating that binding was not decreased to break the complex. When a smaller amount of the receptor was provided (1:1), the antibody species with modifications reducing binding eluted as unbound from SEC, while the antibody-receptor complex eluted as the bound fraction. Peptide mapping revealed ratios of modifications between unbound and bound fractions. Statistical analysis after triplicate measurements (n = 3) indicated that heavy chain (HC) D102 isomerization and light chain (LC) N30 deamidation were four-fold higher in unbound fraction with high statistical significance. Although HC N55 deamidation and M107 oxidation were also abundant, they were not statistically different between unbound and bound. Our findings agree with previously published potency measurements of collected CEX fractions and the crystal structure of antibody and HER2. Overall, competitive SEC of stressed antibody-receptor mixture followed by peptide mapping is a useful tool in revealing critical residues and modifications involved in the antibody-target binding, even if they elute as a complex from SEC when mixed at 1:2 stoichiometric ratio.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7899689PMC
http://dx.doi.org/10.1080/19420862.2021.1887612DOI Listing

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