Department of Biology, Indiana University Indianapolis.
Department of Biology, Indiana University Indianapolis;
J Vis Exp. 2024 Apr 26(206). doi: 10.3791/66529.
Functional characterization of proteins requires them to be expressed and purified in substantial amounts with high purity to perform biochemical assays. The Fast Protein Liquid Chromatography (FPLC) system allows high-resolution separation of complex protein mixtures. By adjusting various parameters in FPLC, such as selecting the appropriate purification matrix, regulating the protein sample's temperature, and managing the sample's flow rate onto the matrix and the elution rate, it is possible to ensure the protein's stability and functionality. In this protocol, we will demonstrate the versatility of the FPLC system to purify 6X-His-tagged flap endonuclease 1 (FEN1) protein, produced in bacterial cultures. To improve protein purification efficiency, we will focus on multiple considerations, including proper column packing and preparation, sample injection using a sample loop, flow rate of sample application to the column, and sample elution parameters. Finally, the chromatogram will be analyzed to identify fractions containing high yields of protein and considerations for proper recombinant protein long-term storage. Optimizing protein purification methods is crucial for improving the precision and reliability of protein analysis.
功能蛋白的特性分析要求其以高纯度大量表达和纯化,以便进行生化分析。快速蛋白液相色谱(FPLC)系统可实现复杂蛋白混合物的高分辨率分离。通过调整 FPLC 的各种参数,如选择合适的纯化基质、调节蛋白样品的温度、控制样品在基质上的流速和洗脱率,可以确保蛋白的稳定性和功能性。在本方案中,我们将展示 FPLC 系统在纯化细菌培养物中产生的 6X-His 标签的核酸内切酶 1(FEN1)蛋白方面的多功能性。为了提高蛋白纯化效率,我们将重点关注多个因素,包括合适的柱子填充和准备、使用样品环进行样品注入、样品在柱子上的应用流速以及样品洗脱参数。最后,将对色谱图进行分析,以确定含有高产量蛋白的馏分,并考虑适当的重组蛋白长期储存。优化蛋白纯化方法对于提高蛋白分析的精度和可靠性至关重要。