a Laboratoire de Spectrométrie de Masse BioOrganique, Université de Strasbourg, CNRS, IPHC UMR 7178 , Strasbourg , France.
b Centre d'Immunologie Pierre-Fabre (CIPF) , Saint-Julien-en-Genevois , France.
MAbs. 2017 Nov/Dec;9(8):1317-1326. doi: 10.1080/19420862.2017.1380762. Epub 2017 Sep 21.
Junctional adhesion molecule-A (JAM-A) is an adherens and tight junction protein expressed by endothelial and epithelial cells and associated with cancer progression. We present here the extensive characterization of immune complexes involving JAM-A antigen and three monoclonal antibodies (mAbs), including hz6F4-2, a humanized version of anti-tumoral 6F4 mAb identified by a functional and proteomic approach in our laboratory. A specific workflow that combines orthogonal approaches has been designed to determine binding stoichiometries along with JAM-A epitope mapping determination at high resolution for these three mAbs. Native mass spectrometry experiments revealed different binding stoichiometries and affinities, with two molecules of JAM-A being able to bind to hz6F4-2 and F11 Fab, while only one JAM-A was bound to J10.4. Surface plasmon resonance indirect competitive binding assays suggested epitopes located in close proximity for hz6F4-2 and F11. Finally, hydrogen-deuterium exchange mass spectrometry was used to precisely identify epitopes for all mAbs. The results obtained by orthogonal biophysical approaches showed a clear correlation between the determined epitopes and JAM-A binding characteristics, allowing the basis for molecular recognition of JAM-A by hz6F4-2 to be definitively established for the first time. Taken together, our results highlight the power of MS-based structural approaches for epitope mapping and mAb conformational characterization.
连接黏附分子-A(JAM-A)是一种黏附分子和紧密连接蛋白,在血管内皮细胞和上皮细胞中表达,并与癌症的进展有关。我们在这里介绍了涉及 JAM-A 抗原和三种单克隆抗体(mAb)的免疫复合物的广泛特征,包括 hz6F4-2,这是我们实验室通过功能和蛋白质组学方法鉴定的抗肿瘤 6F4 mAb 的人源化版本。设计了一种特殊的工作流程,该流程结合了正交方法,用于确定这些三种 mAb 的结合化学计量比以及 JAM-A 表位作图的高分辨率测定。天然质谱实验揭示了不同的结合化学计量比和亲和力,两种 JAM-A 分子能够与 hz6F4-2 和 F11 Fab 结合,而只有一种 JAM-A 与 J10.4 结合。表面等离子体共振间接竞争结合测定表明,hz6F4-2 和 F11 的表位彼此靠近。最后,氢氘交换质谱法用于精确鉴定所有 mAb 的表位。正交生物物理方法获得的结果表明,确定的表位与 JAM-A 结合特性之间存在明显的相关性,这首次明确确定了 hz6F4-2 对 JAM-A 的分子识别基础。总之,我们的研究结果突出了基于 MS 的结构方法在表位作图和 mAb 构象表征方面的强大功能。