Kalie Mix, Tingwan Sun, Brian Hall, Jocelyn Newton, Christina Eng, Yongjing Guo, David Reczek
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引用次数: 0
摘要
多特异性抗体(msAbs)由于其调节多种生物靶点的能力,作为治疗性抗体开发的选择格式正变得越来越普遍。然而,由于产品相关的杂质难以在不损失感兴趣的蛋白质的情况下去除,msAbs提出了独特的蛋白质生产挑战。在这里,我们报告了一种通过改变轻链与Kappa Select (KS)或Protein L (Pro-L)树脂的结合亲和力来去除产品相关杂质的通用方法。在恒定轻链结构域或轻链框架1中引入氨基酸突变,分别取消了与KS和Pro-L树脂的结合,而抗原结合亲和力保持不变。这些纯化使能突变(PEMs)不影响所测蛋白质的热稳定性或纯度。结合PEMs,我们展示了一种完全基于亲和的纯化方案的设计和应用,采用蛋白A (Pro-A),然后是KS和Pro-L亲和树脂,去除y型双特异性抗体和交叉双变量结构域(CODV)三特异性抗体中的轻链错配种。原则上,这种纯化方案可以应用于任何类igg的msAb,因为它与Fc旋钮入孔突变和Fab臂电荷对突变兼容。此外,在早期研究中,它应该适应各种生产规模和中高通量净化工作流程。
Rapid affinity-based purification of multi-specific antibodies using Kappa Select and Protein L.
Multispecific antibodies (msAbs) are becoming more prevalent as formats of choice for therapeutic antibody development due to their ability to modulate multiple biological targets. However, msAbs present unique protein production challenges due to product-related impurities, which are difficult to remove without loss of the protein of interest. Here, we report a versatile approach to remove product-related impurities by altering the binding affinity of light chains to Kappa Select (KS) or Protein L (Pro-L) resins. Introduction of amino acid mutations in the constant light chain domain or Framework 1 of the light chain abolished binding to KS and Pro-L resins, respectively, while antigen binding affinity remained intact. These purification-enabling mutations (PEMs) did not affect the thermal stability or purity of the proteins tested. In conjunction with PEMs, we demonstrate the design and application of an entirely affinity-based purification scheme employing Protein A (Pro-A), followed by KS and Pro-L affinity resins, to remove light chain mispaired species in Y-shaped bispecific antibodies and crossover dual variable domain (CODV) tri-specific antibodies. In principle, this purification scheme could be applied to any IgG-like msAb since it is compatible with Fc knobs-into-holes mutations and Fab arm charge-pair mutations. Moreover, it should be adaptable across a range of production scales and medium to high-throughput purification workflows within early-stage research.
期刊介绍:
mAbs is a multi-disciplinary journal dedicated to the art and science of antibody research and development. The journal has a strong scientific and medical focus, but also strives to serve a broader readership. The articles are thus of interest to scientists, clinical researchers, and physicians, as well as the wider mAb community, including our readers involved in technology transfer, legal issues, investment, strategic planning and the regulation of therapeutics.