Laboratoire de Spectrométrie de Masse BioOrganique, Université de Strasbourg, CNRS, IPHC UMR 7178, 67087 Strasbourg, France.
Infrastructure Nationale de Protéomique ProFI - FR2048, 67087 Strasbourg, France.
Anal Chem. 2022 Jun 7;94(22):7981-7989. doi: 10.1021/acs.analchem.2c00928. Epub 2022 May 23.
Multispecific antibodies, which target multiple antigens at once, are emerging as promising therapeutic entities to offer more effective treatment than conventional monoclonal antibodies (mAbs). However, these highly complex mAb formats pose significant analytical challenges. We report here on the characterization of a trispecific antibody (tsAb), which presents two isomeric forms clearly separated and identified with size exclusion chromatography coupled to native mass spectrometry (SEC-nMS). Previous studies showed that these isomers might originate from a proline / isomerization in one Fab subunit of the tsAb. We combined several innovative ion mobility (IM)-based approaches to confirm the isomeric nature of the two species and to gain new insights into the conformational landscape of both isomers. Preliminary SEC-nIM-MS measurements performed on a low IM resolution instrument provided the first hints of the coexistence of different conformers, while complementary collision-induced unfolding (CIU) experiments evidenced distinct gas-phase unfolding behaviors upon activation for the two isomers. As subtle conformational differences remained poorly resolved on our early generation IM platform, we performed high-resolution cyclic IM (cIM-MS) to unambiguously conclude on the coexistence of two conformers. The / equilibrium was further tackled by exploiting the IM slicing capabilities of the cIM-MS instrument. Altogether, our results clearly illustrate the benefits of combining state-of-the-art nMS and IM-MS approaches to address challenging issues encountered in biopharma. As engineered antibody constructs become increasingly sophisticated, CIU and cIM-MS methodologies undoubtedly have the potential to integrate the drug development analytical toolbox to achieve in-depth conformational characterization of these products.
多特异性抗体可同时靶向多个抗原,作为一种很有前途的治疗实体,其提供的治疗效果比传统的单克隆抗体(mAb)更为有效。然而,这些高度复杂的 mAb 结构形式带来了重大的分析挑战。在此,我们报告了一种三特异性抗体(tsAb)的表征,该抗体通过尺寸排阻色谱法与天然质谱法(SEC-nMS)相结合,呈现出两种明显分离和鉴定的异构形式。先前的研究表明,这些异构体可能源于 tsAb 的一个 Fab 亚基中的脯氨酸/异构化。我们结合了几种创新的离子淌度(IM)方法,以确认两种物质的异构性质,并深入了解两种异构体的构象景观。在低 IM 分辨率仪器上进行的初步 SEC-nIM-MS 测量首先提供了不同构象体共存的线索,而互补的碰撞诱导解折叠(CIU)实验则证明了两种异构体在激活时具有不同的气相解折叠行为。由于早期的 IM 平台对细微的构象差异分辨率较差,我们进行了高分辨率循环 IM(cIM-MS),以明确两种构象体的共存。通过利用 cIM-MS 仪器的 IM 切片功能进一步研究了平衡。总之,我们的结果清楚地说明了结合最先进的 nMS 和 IM-MS 方法来解决生物制药中遇到的具有挑战性问题的好处。随着工程化抗体结构变得越来越复杂,CIU 和 cIM-MS 方法无疑有潜力将药物开发分析工具整合到这些产品的深入构象表征中。