Department of Protein Science, KTH-Royal Institute of Technology , Stockholm , Sweden.
MAbs. 2019 Nov-Dec;11(8):1492-1501. doi: 10.1080/19420862.2019.1662690. Epub 2019 Sep 17.
As reported here, we developed and optimized a purification matrix based on a Protein A-derived domain, Z, displaying calcium-dependent antibody binding. It provides an alternative to the acidic elution conditions of conventional Protein A affinity chromatography for purification of sensitive antibodies and other Fc-based molecules. We describe the multimerization of Z to generate a chromatography resin with higher binding capacity. The highest order multimeric variant, ZTetraCys, demonstrated a considerably high dynamic binding capacity (35 mg IgG/ml resin) while preserving the specificity for IgG. High recovery was obtained and host cell protein and DNA content in purified fractions proved to be comparable to commercial MabSelect SuRe and MabSelect PrismA. Various elution conditions for use of this domain in antibody purification were investigated. The purification data presented here revealed variations in the interaction of different subclasses of human IgG with ZTetraCys. This resulted in diverse elution properties for the different IgGs, where complete elution of all captured antibody for IgG2 and IgG4 was possible at neutral pH. This optimized protein ligand and the proposed purification method offer a unique strategy for effective and mild purification of antibodies and Fc-fusion proteins that cannot be purified under conventional acidic elution conditions due to aggregation formation or loss of function.
如这里所报道的,我们开发并优化了一种基于蛋白 A 衍生结构域 Z 的纯化基质,该结构域具有钙离子依赖性抗体结合能力。它为传统蛋白 A 亲和层析的酸性洗脱条件提供了替代方案,可用于纯化敏感的抗体和其他基于 Fc 的分子。我们描述了 Z 的多聚化,以生成具有更高结合容量的层析树脂。最高阶的多聚变体 ZTetraCys 表现出相当高的动态结合容量(35 mg IgG/ml 树脂),同时保持对 IgG 的特异性。获得了高回收率,并且纯化部分中的宿主细胞蛋白和 DNA 含量与商业 MabSelect SuRe 和 MabSelect PrismA 相当。研究了用于抗体纯化的该结构域的各种洗脱条件。这里呈现的纯化数据揭示了不同亚类的人 IgG 与 ZTetraCys 的相互作用存在差异。这导致了不同 IgG 的洗脱性质不同,其中 IgG2 和 IgG4 可以在中性 pH 下完全洗脱所有捕获的抗体。这种优化的蛋白质配体和提出的纯化方法为有效且温和地纯化因聚集形成或功能丧失而无法在传统酸性洗脱条件下纯化的抗体和 Fc 融合蛋白提供了一种独特的策略。