Browne-Cole Kirsten, Hanning Kyrin R, Beijerling Kevin, Rousseau Meghan, Loh Jacelyn, Kelton William
Te Aka Mātuatua School of Science, University of Waikato, Hamilton, 3240, New Zealand.
School of Pharmacy and Biomedical Science, University of Waikato, Hamilton, 3240, New Zealand.
Sci Rep. 2025 Mar 19;15(1):9505. doi: 10.1038/s41598-025-92928-3.
Antibody epitope profiling is essential for assessing the robustness of vaccine-induced immune responses, particularly while in development. Despite advancements in computational tools, high throughput experimental epitope validation remains an important step. Here, we describe a readily accessible method for rapid linear epitope profiling using phage-displayed oligo pools in combination with Nanopore deep sequencing. We applied this approach to TeeVax3, a Group A Streptococcus vaccine candidate, to investigate the antibody response generated in a pre-clinical rabbit model and assess antigen immunogenicity. Surprisingly, we found a strong bias in antibody binding response towards the N-terminal epitope tag used for purification. These tags are widely reported to have low immunogenicity and are frequently left uncleaved in pre-clinical studies. We further confirmed that the observed immune response against the epitope tag dominated even the conformational binding response and, using synthetic peptides, narrowed the epitope down to a set of 10 residues inclusive of the Histidine residues. Our findings highlight the importance of epitope-tag removal in pre-clinical studies and demonstrate the utility of rapid Nanopore sequencing for early-stage vaccine evaluation.
抗体表位分析对于评估疫苗诱导的免疫反应的稳健性至关重要,尤其是在疫苗研发过程中。尽管计算工具有所进步,但高通量实验性表位验证仍然是重要的一步。在此,我们描述了一种易于使用的方法,通过结合噬菌体展示寡核苷酸库和纳米孔深度测序进行快速线性表位分析。我们将此方法应用于A群链球菌疫苗候选物TeeVax3,以研究临床前兔模型中产生的抗体反应并评估抗原免疫原性。令人惊讶的是,我们发现抗体结合反应对用于纯化的N端表位标签存在强烈偏向。这些标签广泛报道具有低免疫原性,并且在临床前研究中经常不进行切割。我们进一步证实,观察到的针对表位标签的免疫反应甚至主导了构象结合反应,并使用合成肽将表位缩小到一组包含组氨酸残基的10个残基。我们的研究结果突出了在临床前研究中去除表位标签的重要性,并证明了快速纳米孔测序在早期疫苗评估中的实用性。