Protein Biochemistry, Regeneron Pharmaceuticals, Inc., 777 Old Saw Mill River Road, Tarrytown, NY 10591, United States.
Protein Biochemistry, Regeneron Pharmaceuticals, Inc., 777 Old Saw Mill River Road, Tarrytown, NY 10591, United States.
J Pharm Biomed Anal. 2024 Jul 15;244:116120. doi: 10.1016/j.jpba.2024.116120. Epub 2024 Mar 18.
Charge heterogeneity is inherent to all therapeutic antibodies and arises from post-translational modifications (PTMs) and/or protein degradation events that may occur during manufacturing. Among therapeutic antibodies, the bispecific antibody (bsAb) containing two unique Fab arms directed against two different targets presents an additional layer of complexity to the charge profile. In the context of a bsAb, a single domain-specific PTM within one of the Fab domains may be sufficient to compromise target binding and could potentially impact the stability, safety, potency, and efficacy of the drug product. Therefore, characterization and routine monitoring of domain-specific modifications is critical to ensure the quality of therapeutic bispecific antibody products. We developed a Digestion-assisted imaged Capillary isoElectric focusing (DiCE) method to detect and quantitate domain-specific charge variants of therapeutic bispecific antibodies (bsAbs). The method involves enzymatic digestion using immunoglobulin G (IgG)-degrading enzyme of S. pyogenes (IdeS) to generate F(ab) and Fc fragments, followed by imaged capillary isoelectric focusing (icIEF) under reduced, denaturing conditions to separate the light chains (LCs) from the Fd domains. Our results suggest that DiCE is a highly sensitive method that is capable of quantitating domain-specific PTMs of a bsAb. In one case study, DiCE was used to quantitate unprocessed C-terminal lysine and site-specific glycation of Lys in the complementarity-determining region (CDR) of a bsAb that could not be accurately quantitated using conventional, platform-based charge variant analysis, such as intact icIEF. Quantitation of these PTMs by DiCE was comparable to results from peptide mapping, demonstrating that DiCE is a valuable orthogonal method for ensuring product quality. This method may also have potential applications for characterizing fusion proteins, antibody-drug conjugates, and co-formulated antibody cocktails.
电荷异质性是所有治疗性抗体所固有的,源于翻译后修饰(PTMs)和/或制造过程中可能发生的蛋白质降解事件。在治疗性抗体中,含有两个针对两个不同靶点的独特 Fab 臂的双特异性抗体(bsAb)为电荷分布增加了一个额外的复杂性。在 bsAb 的情况下,一个 Fab 结构域内的单一结构域特异性 PTM 可能足以影响靶标结合,并可能影响药物产品的稳定性、安全性、效力和功效。因此,对结构域特异性修饰的表征和常规监测对于确保治疗性双特异性抗体产品的质量至关重要。我们开发了一种消化辅助成像毛细管等电聚焦(DiCE)方法来检测和定量治疗性双特异性抗体(bsAb)的结构域特异性电荷变体。该方法涉及使用化脓性链球菌(IdeS)的 IgG 降解酶进行酶促消化,生成 F(ab)和 Fc 片段,然后在还原变性条件下进行成像毛细管等电聚焦(icIEF),将轻链(LCs)与 Fd 结构域分离。我们的结果表明,DiCE 是一种高度敏感的方法,能够定量分析 bsAb 的结构域特异性 PTMs。在一个案例研究中,DiCE 用于定量分析 bsAb 的补体决定区(CDR)中未加工的 C 末端赖氨酸和赖氨酸的特异性糖基化,这无法使用传统的基于平台的电荷变体分析(如完整 icIEF)准确定量。DiCE 定量这些 PTMs 的结果与肽图分析的结果相当,表明 DiCE 是确保产品质量的一种有价值的正交方法。该方法还可能有潜力用于表征融合蛋白、抗体药物偶联物和联合配方的抗体鸡尾酒。