Chin Stacey E, Gallego Pablo, Aagaard Anna, Carmen Sara, Barrett Nathalie, Wolny Marcin, Cloarec Sophie, Paterson Judy, Sivapalan Rohan, Hunt James, Murray Thomas V, Delaney Tracy, Sjögren Tove, Neal Frances
Biologics Engineering, Oncology R&D, AstraZeneca, Cambridge, UK.
Structure and BioPhysics, Discovery Sciences, BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Sweden.
SLAS Discov. 2025 Mar;31:100216. doi: 10.1016/j.slasd.2025.100216. Epub 2025 Jan 18.
Neurotrophic factor 3 (NTF3) is a cysteine knot protein and a member of the nerve growth factor (NGF) family of cytokines. NTF3 engages the Trk family of receptor tyrosine kinases, playing a pivotal role in the development and function of both the central and peripheral nervous systems. Its involvement in neuronal survival, differentiation, and growth links NTF3 to a spectrum of neurodegenerative diseases. Consequently, targeting NTF3 with antibodies holds promise as a first in class therapeutic opportunity for a wide range of conditions. Specific and neutralizing antibodies against NTF3 were successfully isolated using phage display. Initial phage display selections revealed a preference of hits for a longer than average complementarity-determining region 3 (CDR3) in the heavy chain variable domain (VH). To investigate this further we developed a long loop length VH CDR3 antibody library that demonstrated increased hit rates versus a standard antibody library and allowed the isolation of IgG that demonstrated inhibition of functional activity, coupled with a favourable kinetic profile. Structural analysis of the Fab/NTF3 interaction, via X-ray crystallography, unveiled an unconventional interaction wherein regions beyond the longer CDR loops of the Fab induced ordering in a flexible loop on NTF3, which remained disordered in its free antigenic state. This comprehensive approach not only sheds light on the therapeutic potential of NTF3-specific antibodies but also provides critical structural details that enhance our understanding of the complex NTF3-Fab interaction thus offering valuable insights for future antibody design and therapeutic development.
神经营养因子3(NTF3)是一种半胱氨酸结蛋白,属于细胞因子的神经生长因子(NGF)家族。NTF3与Trk家族的受体酪氨酸激酶结合,在中枢和外周神经系统的发育和功能中发挥关键作用。它参与神经元的存活、分化和生长,这将NTF3与一系列神经退行性疾病联系起来。因此,用抗体靶向NTF3有望成为治疗多种疾病的首个同类疗法。利用噬菌体展示成功分离出了针对NTF3的特异性中和抗体。最初的噬菌体展示筛选结果显示,重链可变区(VH)中互补决定区3(CDR3)长于平均长度的命中序列更受青睐。为了进一步研究这一现象,我们构建了一个长环长度VH CDR3抗体文库,与标准抗体文库相比,该文库的命中率有所提高,并能够分离出具有功能活性抑制作用且动力学特性良好的IgG。通过X射线晶体学对Fab/NTF3相互作用进行的结构分析揭示了一种非常规相互作用,其中Fab较长CDR环以外的区域诱导NTF3上一个柔性环发生有序排列,该柔性环在其游离抗原状态下保持无序。这种全面的方法不仅揭示了NTF3特异性抗体的治疗潜力,还提供了关键的结构细节,增强了我们对复杂的NTF3-Fab相互作用的理解,从而为未来的抗体设计和治疗开发提供了有价值的见解。