Dept. of Chemical and Biomolecular Engineering, University of Delaware, Newark, DE 19716, USA.
Biotechnol Prog. 2013 Jul-Aug;29(4):968-71. doi: 10.1002/btpr.1757. Epub 2013 Jun 26.
Previously, we reported a non-chromatographic protein purification method exploiting the highly specific interaction between the dockerin and cohesin domains from Clostridium thermocellum and the reversible aggregation property of elastin-like polypeptide (ELP) to provide fast and cost-effective protein purification. However, the bound dockerin-intein tag cannot be completely dissociated from the ELP-cohesin capturing scaffold due to the high binding affinity, resulting in a single-use approach. In order to further reduce the purification cost by recycling the ELP capturing scaffold, a truncated dockerin domain with the calcium-coordinating function partially impaired was employed. We demonstrated that the truncated dockerin domain was sufficient to function as an effective affinity tag, and the target protein was purified directly from cell extracts in a single binding step followed by intein cleavage. The efficient EDTA-mediated dissociation of the bound dockerin-intein tag from the ELP-cohesin capturing scaffold was realized, and the regenerated ELP capturing scaffold was reused in another purification cycle without any decrease in the purification efficiency. This recyclable non-chromatographic based affinity method provides an attractive approach for efficient and cost-effective protein purification.
此前,我们报道了一种非色谱蛋白纯化方法,利用来自热纤维梭菌的 dockerin 和 cohesin 结构域与弹性蛋白样多肽(ELP)的可逆聚集特性之间的高度特异性相互作用,提供快速且具有成本效益的蛋白纯化。然而,由于结合亲和力高,与 ELP-cohesin 捕获支架结合的 dockerin-intein 标签不能完全解离,导致只能一次性使用。为了通过回收 ELP 捕获支架进一步降低纯化成本,采用了部分破坏钙配位功能的截断 dockerin 结构域。我们证明,截断的 dockerin 结构域足以作为有效的亲和标签发挥作用,目标蛋白可直接从细胞提取物中进行单一结合步骤和内含肽切割进行纯化。通过 EDTA 有效地将结合的 dockerin-intein 标签从 ELP-cohesin 捕获支架上解离,再生的 ELP 捕获支架可在另一个纯化循环中重复使用,而不会降低纯化效率。这种可重复使用的基于非色谱的亲和方法为高效和具有成本效益的蛋白纯化提供了一种有吸引力的方法。