Analytical Chemistry, Regeneron Pharmaceuticals Inc, Tarrytown, NY, USA.
Protein Biochemistry, Regeneron Pharmaceuticals Inc, Tarrytown, NY, USA.
MAbs. 2023 Jan-Dec;15(1):2228006. doi: 10.1080/19420862.2023.2228006.
Development of novel bispecific antibody (bsAb) platforms offers unprecedented opportunities for a wide variety of therapeutic applications. However, the expression and manufacturing of bsAbs with desired structures can be challenging. Owing to the uniqueness of each bsAb platform, more comprehensive and customized structural characterization is particularly important to understand the chemical or biological reactivity of bsAbs, as well as to guide process development, risk assessment, and manufacturing. In this work, we performed higher order structure characterization of the Regeneron bsAb platform with Fc site-specific substitutions through hydrogen deuterium exchange mass spectrometry (HDX-MS). Structural deprotection was identified at the C2-C3 interface in the Fc domain, owing to the site-specific substitutions. The structural deprotection was found to correlate with the decreased conformational stability of Fc domain. Under oxidative and thermal stress conditions, the Met residues located near the structurally deprotected region were identified to be susceptible to oxidation. In addition, the introduction of substitutions in the bsAb Fc resulted in a slight reduction of its binding affinity to the neonatal Fc receptor (FcRn). The detailed structural elucidation by HDX-MS improves understanding of the structure-property relationship of the Regeneron bsAb format, thus greatly aiding in process development, risk assessment, and manufacturing.
新型双特异性抗体(bsAb)平台的发展为各种治疗应用提供了前所未有的机会。然而,具有所需结构的 bsAb 的表达和制造可能具有挑战性。由于每个 bsAb 平台的独特性,更全面和定制的结构表征对于理解 bsAb 的化学或生物学反应性以及指导工艺开发、风险评估和制造尤为重要。在这项工作中,我们通过氢氘交换质谱(HDX-MS)对具有 Fc 位点特异性取代的再生元 bsAb 平台进行了高级结构表征。结构去保护在 Fc 结构域的 C2-C3 界面被鉴定出来,这是由于位点特异性取代。结构去保护与 Fc 结构域的构象稳定性降低有关。在氧化和热应激条件下,鉴定出位于结构去保护区域附近的 Met 残基易被氧化。此外,bsAb Fc 中的取代引入导致其对新生儿 Fc 受体(FcRn)的结合亲和力略有降低。HDX-MS 的详细结构阐明提高了对再生元 bsAb 结构的结构-性质关系的理解,从而极大地有助于工艺开发、风险评估和制造。