The Scripps Research Institute, La Jolla, CA, United States.
Horvath Csaba Memorial Laboratory of Bioseparation Sciences, Research Centre for Molecular Medicine, Doctoral School of Molecular Medicine, Faculty of Medicine, University of Debrecen, Debrecen, Hungary.
Curr Mol Med. 2020;20(10):789-797. doi: 10.2174/1566524020666200415095830.
To demonstrate the capabilities of our new capillary electrophoresis - mass spectrometry method, which facilitates highly accurate relative quantitation of modification site occupancy of antibody-ligand (e.g., antibody-drug) conjugates.
Antibody-drug conjugates play important roles in medical discovery for imaging and therapeutic intervention. The localization and stoichiometry of the conjugation can affect the orientation, selectivity, specificity, and strength of molecular interactions, influencing biochemical function.
To demonstrate the option to analyze the localization and stoichiometry of antibody-ligand conjugates by using essentially the same method at all levels including ligand infusion, peptide mapping, as well as reduced and intact protein analysis.
Capillary electrophoresis coupled with electrospray ionization mass spectrometry was used to analyze the antibody-ligand conjugates.
We identified three prevalent ligand conjugation sites with estimated stoichiometries of 73, 14, and 6% and an average ligand-antibody ratio of 1.37, illustrating the capabilities of CE-ESI-MS for rapid and efficient characterization of antibody-drug conjugates.
The developed multilevel analytical method offers a comprehensive way to determine the localization and stoichiometry of antibody-drug conjugates for molecular medicinal applications. In addition, a significant advantage of the reported approach is the small, hydrophilic, unmodified peptides well separated from the neutrals, which is not common with other liquid phase separation methods such as LC.
展示我们新的毛细管电泳-质谱法的能力,该方法可实现抗体-配体(例如抗体-药物)缀合物的修饰位点占有率的高度准确相对定量。
抗体-药物偶联物在医学发现中对于成像和治疗干预具有重要作用。缀合的定位和化学计量可以影响分子相互作用的方向、选择性、特异性和强度,从而影响生物化学功能。
证明通过基本上相同的方法在包括配体输注、肽图分析以及还原和完整蛋白质分析在内的各个层面分析抗体-配体缀合物的定位和化学计量的选择。
使用毛细管电泳与电喷雾电离质谱联用分析抗体-配体缀合物。
我们鉴定了三个常见的配体缀合位点,其估计化学计量分别为 73%、14%和 6%,平均配体-抗体比为 1.37,说明了 CE-ESI-MS 用于快速高效表征抗体-药物偶联物的能力。
所开发的多层次分析方法为分子医学应用中抗体-药物偶联物的定位和化学计量提供了一种全面的方法。此外,所报道方法的一个显著优势是从小的、亲水的、未修饰的肽与中性物质很好地分离,这与其他液相分离方法(如 LC)不同。