Analytical Chemistry, Regeneron Pharmaceuticals, Inc., 777 Old Saw Mill River Road, Tarrytown, New York 10591, United States.
Anal Chem. 2020 Jul 21;92(14):9682-9690. doi: 10.1021/acs.analchem.0c00999. Epub 2020 Jun 30.
Peptide mapping coupled with liquid chromatography-mass spectrometry (LC-MS) has become an essential analytical technique to quantify the quality attributes (e.g., post-translational modifications [PTMs]) of monoclonal antibodies (mAbs) during drug development. However, the traditional label-free approach for relative quantitation of PTMs requires a great amount of instrument time for LC-MS data acquisition of individual digested samples, which limits the efficiency of peptide mapping when there is an increasing demand for protein characterization. Here, we developed a tandem mass tag (TMT)-based approach in combination with targeted mass spectrometry for multiplexed site-specific PTM quantitation of monoclonal antibodies to overcome this limitation. This approach enables the simultaneous quantitation of quality attributes (e.g., PTMs) for multiple samples in a single LC-MS run. By adjusting higher-energy collision dissociation (HCD) normalized collisional energies (NCEs) from 35 to 90, different types of PTMs were quantified with percentages comparable to those obtained using the conventional approach. The TMT overlabeling on the off-target amino acid residues serine, threonine, and tyrosine was observed to pose a challenge for this targeted MS/MS-based PTM quantitation. However, we inhibited this off-target overlabeling by adding a small-molecule additive during the TMT labeling as a decoy reagent to deplete the excess amount of TMT reagent. The PTM quantitative performance of this approach demonstrated high sensitivity and reproducibility of PTM quantitation with levels as low as 1.0%. Finally, this approach has been utilized to quantify the PTMs for forced degradation samples, comparability samples, and trisulfide standards of monoclonal antibodies.
肽图分析结合液相色谱-质谱联用(LC-MS)已成为药物开发过程中定量单克隆抗体(mAb)质量属性(如翻译后修饰 [PTMs])的重要分析技术。然而,传统的 PTMs 相对定量无标记方法需要大量的仪器时间来获取单个消化样品的 LC-MS 数据,这限制了肽图分析的效率,因为对蛋白质表征的需求不断增加。在这里,我们开发了一种串联质量标签(TMT)-基于方法与靶向质谱相结合,用于对单克隆抗体进行多聚体特异性 PTM 定量,以克服这一限制。该方法能够在单次 LC-MS 运行中同时定量多个样品的质量属性(例如 PTMs)。通过将更高能量碰撞解离(HCD)归一化碰撞能(NCE)从 35 调整到 90,不同类型的 PTM 以与使用传统方法获得的百分比相当的方式进行定量。TMT 在非靶氨基酸残基丝氨酸、苏氨酸和酪氨酸上的过度标记被观察到对这种基于靶向 MS/MS 的 PTM 定量构成挑战。然而,我们通过在 TMT 标记过程中添加小分子添加剂作为诱饵试剂来抑制这种非靶过度标记,从而耗尽过量的 TMT 试剂。该方法的 PTM 定量性能证明了 PTM 定量具有高灵敏度和重现性,定量下限低至 1.0%。最后,该方法已用于定量单克隆抗体的强制降解样品、可比性样品和三硫键标准品的 PTMs。