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Proteoform-Resolved Fc?RIIIa Binding Assay for Fab Glycosylated Monoclonal Antibodies Achieved by Affinity Chromatography Mass Spectrometry of Fc Moieties

机译:Fc部分的亲和层析质谱法实现的Fab糖基化单克隆抗体的蛋白形式分辨的Fc?RIIIa结合测定

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Fc? receptors (Fc?R) mediate key functions in immunological responses. For instance, Fc?RIIIa is involved in antibody-dependent cell-mediated cytotoxicity (ADCC). Fc?RIIIa interacts with the fragment crystallizable (Fc) of immunoglobulin G (IgG). This interaction is known to be highly dependent on IgG Fc glycosylation. Thus, the impact of glycosylation features on this interaction has been investigated in several studies by numerous analytical and biochemical techniques. Fc?RIIIa affinity chromatography (AC) hyphenated to mass spectrometry (MS) is a powerful tool to address co-occurring Fc glycosylation heterogeneity of monoclonal antibodies (mAbs). However, MS analysis of mAbs at the intact level may provide limited proteoform resolution, for example, when additional heterogeneity is present, such as antigen-binding fragment (Fab) glycosylation. Therefore, we investigated middle-up approaches to remove the Fab and performed AC-MS on the IgG Fc to evaluate its utility for Fc?RIIIa affinity assessment compared to intact IgG analysis. We found the protease Kgp to be particularly suitable for a middle-up Fc?RIIIa AC-MS workflow as demonstrated for the Fab glycosylated cetuximab. The complexity of the mass spectra of Kgp digested cetuximab was significantly reduced compared to the intact level while affinity was fully retained. This enabled a reliable assignment and relative quantitation of Fc glycoforms in Fc?RIIIa AC-MS. In conclusion, our workflow allows a functional separation of differentially glycosylated IgG Fc. Consequently, applicability of Fc?RIIIa AC-MS is extended to Fab glycosylated IgG, i.e. cetuximab, by significantly reducing ambiguities in glycoform assignment versus intact analysis.
机译:Fc?受体(FcγR)介导免疫反应中的关键功能。例如,FcαRIIIa参与抗体依赖性细胞介导的细胞毒性(ADCC)。 FcγRIIIa与免疫球蛋白G(IgG)的可结晶片段(Fc)相互作用。已知这种相互作用高度依赖于IgG Fc糖基化。因此,糖基化特征对这种相互作用的影响已经在许多研究中通过许多分析和生化技术进行了研究。连接到质谱(MS)的FcαRIIIa亲和色谱(AC)是解决单克隆抗体(mAb)共同存在的Fc糖基化异质性的强大工具。但是,例如,当存在其他异质性(例如抗原结合片段(Fab)糖基化)时,完整水平的mAb的MS分析可能会提供有限的蛋白形式分辨率。因此,我们研究了去除Fab的中上方法,并对IgG Fc进行了AC-MS,以评估其与完整IgG分析相比对FcγRIIIa亲和力评估的效用。我们发现,蛋白酶Kgp特别适合于Fab糖基化西妥昔单抗的中上Fc?RIIIa AC-MS工作流程。与完整水平相比,Kgp消化的西妥昔单抗质谱的复杂性大大降低,而亲和力却得到了完全保留。这使得在FcγRIIIaAC-MS中Fc糖型的可靠分配和相对定量成为可能。总而言之,我们的工作流程可实现糖基化差异化IgG Fc的功能分离。因此,与完整分析相比,通过显着降低糖型分配的歧义性,将FcγRIIIaAC-MS的适用性扩展至Fab糖基化IgG,即西妥昔单抗。

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