Chemical Optosensors and Applied Photochemistry Group (GSOLFA), Department of Analytical Chemistry, Faculty of Chemistry , Complutense University of Madrid , 28040 Madrid , Spain.
Anal Chem. 2019 Mar 19;91(6):4100-4106. doi: 10.1021/acs.analchem.8b05731. Epub 2019 Mar 6.
Epitope tagging is widely used to fuse a known epitope to proteins for which no affinity receptor is available by using recombinant DNA technology. One example is FLAG epitope (DYKDDDDK), which provides better purity and recoveries than the favorite poly histidine tag. However, purification requires using anti-FLAG antibody resins, the high cost and nonreusability of which restrict widespread use. One cost-effective solution is provided by the use of bioinspired anti-FLAG molecularly imprinted polymers (MIPs). This work describes the development of MIPs, based on the epitope approach, synthesized from the tetrapeptide DYKD as template that affords purification of FLAG-derived recombinant proteins. Polymer was optimized by using a combinatorial approach to select the functional monomer(s) and cross-linker(s), resulting in the best specific affinity toward FLAG and the peptide DYKD. The imprinted resin obtained was used to purify mCherry proteins tagged with either FLAG or DYKD epitopes from crude cell lysates. Both mCherry variants were highly efficiently purified ( R ≥ 95%, RSD ≤ 15%, n = 3) and impurities were removed. Unlike existing antibody-based resins, the proposed tag-imprinting strategy provides a general method for meeting the growing demand for efficient, inexpensive, and versatile materials for tagged proteins purification.
表位标记广泛用于通过重组 DNA 技术将已知表位融合到缺乏亲和受体的蛋白质中。一个例子是 FLAG 表位(DYKDDDDK),它提供了比常用的多组氨酸标记更好的纯度和回收率。然而,纯化需要使用抗-FLAG 抗体树脂,其高成本和不可重复使用性限制了其广泛应用。使用仿生抗-FLAG 分子印迹聚合物 (MIP) 提供了一种经济有效的解决方案。这项工作描述了基于表位方法的 MIP 的开发,该方法使用四肽 DYKD 作为模板合成,可用于纯化源自 FLAG 的重组蛋白。通过使用组合方法来选择功能单体和交联剂,对聚合物进行了优化,从而获得了对 FLAG 和肽 DYKD 的最佳特异性亲和力。获得的印迹树脂用于从粗细胞裂解物中纯化标记有 FLAG 或 DYKD 表位的 mCherry 蛋白。两种 mCherry 变体都得到了高效的纯化(R ≥ 95%,RSD ≤ 15%,n = 3),并去除了杂质。与现有的基于抗体的树脂不同,所提出的标记印迹策略为满足对高效、廉价和通用的标记蛋白纯化材料的日益增长的需求提供了一种通用方法。