Ringaci Alina, Shih Ting-Yu, Grinstaff Mark W
Departments of Chemistry and Biomedical Engineering, Boston University, Boston, MA 02215.
bioRxiv. 2025 Jul 25:2025.07.21.665979. doi: 10.1101/2025.07.21.665979.
Antibody conjugates play a central role across multiple healthcare sectors with a prime example being antibody-drug conjugates (ADCs). Although widely used lysine and hinge cysteine conjugation methods yield products, the lack of site-specificity and spatial control along with the highly heterogeneous composition are significant limitations. We describe a facile supramolecular assembly method based on heterodimer coiled-coil formation for site-specific antibody conjugation. The method affords uniform loading of diverse payloads including anti-cancer agents, polymers, enzymes, fluorophores, etc. under mild aqueous conditions. Further, the facile convergent approach capitalizes on the independent strengths and flexibility of protein expression and peptide chemistry culminating in a final self-assembly step. Coiled-coil conjugation perseveres both antibody antigen binding sites for target engagement and heavy chains constant domains for Fc binding and recycling. An ADC loaded with monomethyl auristatin E targeting HER2+ tumors significantly reduces tumor volume in a human ovarian cancer xenograft model outperforming the antibody alone with validated performance against a best-in-class therapeutic. Supramolecular assembly-driven bioconjugation expands the bioorthogonal chemistry toolbox for antibody modification and opens new avenues for advanced antibody conjugates with multiple payloads.
抗体偶联物在多个医疗保健领域发挥着核心作用,抗体药物偶联物(ADC)就是一个典型例子。尽管广泛使用的赖氨酸和铰链半胱氨酸偶联方法能产生产品,但缺乏位点特异性和空间控制以及高度异质的组成是显著限制因素。我们描述了一种基于异二聚体卷曲螺旋形成的简便超分子组装方法,用于位点特异性抗体偶联。该方法在温和的水性条件下能实现包括抗癌剂、聚合物、酶、荧光团等多种有效载荷的均匀负载。此外,这种简便的收敛方法利用了蛋白质表达和肽化学的独立优势和灵活性,最终形成一个最终的自组装步骤。卷曲螺旋偶联既能保留抗体用于靶标结合的抗原结合位点,又能保留用于Fc结合和循环利用的重链恒定区。一种负载单甲基奥瑞他汀E靶向HER2 +肿瘤的ADC在人卵巢癌异种移植模型中显著减小肿瘤体积,其性能优于单独使用抗体,与同类最佳疗法相比具有经过验证的性能。超分子组装驱动的生物偶联扩展了用于抗体修饰的生物正交化学工具箱,并为具有多种有效载荷的先进抗体偶联物开辟了新途径。