Leippe Donna M, Zhao Kate Qin, Hsiao Kevin, Slater Michael R
Research and Development, Promega Corporation, 2800 Woods Hollow Road, Madison, WI, 53711, USA. Email:
Anal Chem Insights. 2010 May 19;5:25-36. doi: 10.4137/aci.s4732.
Functional protein analysis often calls for lengthy, laborious in vivo protein expression and purification, and can be complicated by the lack of stability of the purified protein. In this study, we demonstrate the feasibility of a simplified procedure for functional protein analysis on magnetic particles using cell-free protein synthesis of the catalytic subunit of human cAMP-dependent protein kinase as a HaloTag((R)) fusion protein. The cell-free protein synthesis systems provide quick access to the protein of interest, while the HaloTag technology provides efficient, covalent protein immobilization of the fusion protein, eliminating the need for further protein purification and minimizing storage-related stability issues. The immobilized cPKA fusion protein is assayed directly on magnetic beads and can be used in inhibitor analyses. The combination of rapid protein synthesis and capture technologies can greatly facilitate the process of protein expression and activity screening, and therefore, can become a valuable tool for functional proteomics studies.
功能蛋白分析通常需要进行冗长、费力的体内蛋白表达和纯化,而且纯化后的蛋白缺乏稳定性可能会使这一过程变得复杂。在本研究中,我们展示了一种简化程序用于功能蛋白分析的可行性,该程序利用无细胞蛋白质合成技术,将人cAMP依赖性蛋白激酶的催化亚基作为HaloTag((R))融合蛋白在磁性颗粒上进行功能蛋白分析。无细胞蛋白质合成系统能够快速获得目标蛋白,而HaloTag技术则能对融合蛋白进行高效、共价的蛋白质固定,从而无需进一步的蛋白纯化,并将与储存相关的稳定性问题降至最低。固定化的cPKA融合蛋白可直接在磁珠上进行检测,并可用于抑制剂分析。快速蛋白质合成和捕获技术的结合能够极大地促进蛋白质表达和活性筛选过程,因此可成为功能蛋白质组学研究的宝贵工具。