Protein Analytical Chemistry, Genentech, A Member of the Roche Group, South San Francisco, CA, United States.
Biological Technologies, Genentech, A Member of the Roche Group, South San Francisco, CA, United States.
Front Immunol. 2023 Sep 18;14:1260446. doi: 10.3389/fimmu.2023.1260446. eCollection 2023.
Human Fc gamma receptor IIa (FcγRIIa) or CD32a has two major allotypes with a single amino acid difference at position 131 (histidine or arginine). Differences in FcγRIIa allotypes are known to impact immunological responses such as the clinical outcome of therapeutic monoclonal antibodies (mAbs). FcγRIIa is involved in antibody-dependent cellular phagocytosis (ADCP), which is an important contributor to the mechanism-of-action of mAbs by driving phagocytic clearance of cancer cells. Hence, understanding the impact of individual mAb proteoforms on the binding to FcγRIIa, and its different allotypes, is crucial for defining meaningful critical quality attributes (CQAs). Here, we report a function-structure based approach guided by novel FcγRIIa affinity chromatography-mass spectrometry (AC-MS) assays to assess individual IgG1 proteoforms. This allowed to unravel allotype-specific differences of IgG1 proteoforms on FcγRIIa binding. FcγRIIa AC-MS confirmed and refined structure-function relationships of IgG1 glycoform interactions. For example, the positive impact of afucosylation was higher than galactosylation for FcγRIIa Arg compared to FcγRIIa His. Moreover, we observed FcγRIIa allotype-opposing and IgG1 proteoform integrity-dependent differences in the binding response of stress-induced IgG1 proteoforms comprising asparagine 325 deamidation. The FcγRIIa-allotype dependent binding differences resolved by AC-MS were in line with functional ADCP-surrogate bioassay models. The molecular basis of the observed allotype specificity and proteoform selectivity upon asparagine 325 deamidation was elucidated using molecular dynamics. The observed differences were attributed to the contributions of an inter-molecular salt bridge between IgG1 and FcγRIIa Arg and the contribution of an intra-molecular hydrophobic pocket in IgG1. Our work highlights the unprecedented structural and functional resolution of AC-MS approaches along with predictive biological significance of observed affinity differences within relevant cell-based methods. This makes FcγRIIa AC-MS an invaluable tool to streamline the CQA assessment of therapeutic mAbs.
人 Fc 受体 IIa(FcγRIIa)或 CD32a 有两个主要的同种型,在位置 131 处只有一个氨基酸的差异(组氨酸或精氨酸)。FcγRIIa 同种型的差异已知会影响免疫反应,例如治疗性单克隆抗体(mAb)的临床结果。FcγRIIa 参与抗体依赖性细胞吞噬作用(ADCP),这是 mAb 作用机制的一个重要贡献,通过驱动癌细胞的吞噬清除。因此,了解单个 mAb 蛋白形式对 FcγRIIa 及其不同同种型的结合的影响对于定义有意义的关键质量属性(CQA)至关重要。在这里,我们报告了一种基于新型 FcγRIIa 亲和层析-质谱(AC-MS)测定的功能-结构方法,用于评估单个 IgG1 蛋白形式。这使得能够揭示 IgG1 蛋白形式在 FcγRIIa 结合上的同种型特异性差异。FcγRIIa AC-MS 证实并细化了 IgG1 糖型相互作用的结构-功能关系。例如,与 FcγRIIa His 相比,去岩藻糖基化对 FcγRIIa Arg 的影响高于半乳糖基化。此外,我们观察到在应激诱导的 IgG1 蛋白形式的结合反应中存在 FcγRIIa 同种型对立和 IgG1 蛋白形式完整性依赖性差异,包括天冬酰胺 325 脱酰胺。AC-MS 解析的 FcγRIIa 同种型依赖性结合差异与功能性 ADCP 替代生物测定模型一致。使用分子动力学阐明了观察到的同种型特异性和天冬酰胺 325 脱酰胺时蛋白形式选择性的分子基础。观察到的差异归因于 IgG1 和 FcγRIIa Arg 之间的分子间盐桥的贡献以及 IgG1 内的分子内疏水口袋的贡献。我们的工作突出了 AC-MS 方法的前所未有的结构和功能分辨率,以及在相关细胞方法中观察到的亲和力差异的预测生物学意义。这使得 FcγRIIa AC-MS 成为简化治疗性 mAb 的 CQA 评估的宝贵工具。