Saul Justin, Petritis Brianne, Sau Sujay, Rauf Femina, Gaskin Michael, Ober-Reynolds Benjamin, Mineyev Irina, Magee Mitch, Chaput John, Qiu Ji, LaBaer Joshua
Virginia G. Piper Center for Personalized Diagnostics, Biodesign Institute, Arizona State University, Tempe, Arizona, 85287-6401.
Protein Sci. 2014 Aug;23(8):1123-35. doi: 10.1002/pro.2484. Epub 2014 Jun 2.
There are many proteomic applications that require large collections of purified protein, but parallel production of large numbers of different proteins remains a very challenging task. To help meet the needs of the scientific community, we have developed a human protein production pipeline. Using high-throughput (HT) methods, we transferred the genes of 31 full-length proteins into three expression vectors, and expressed the collection as N-terminal HaloTag fusion proteins in Escherichia coli and two commercial cell-free (CF) systems, wheat germ extract (WGE) and HeLa cell extract (HCE). Expression was assessed by labeling the fusion proteins specifically and covalently with a fluorescent HaloTag ligand and detecting its fluorescence on a LabChip(®) GX microfluidic capillary gel electrophoresis instrument. This automated, HT assay provided both qualitative and quantitative assessment of recombinant protein. E. coli was only capable of expressing 20% of the test collection in the supernatant fraction with ≥20 μg yields, whereas CF systems had ≥83% success rates. We purified expressed proteins using an automated HaloTag purification method. We purified 20, 33, and 42% of the test collection from E. coli, WGE, and HCE, respectively, with yields ≥1 μg and ≥90% purity. Based on these observations, we have developed a triage strategy for producing full-length human proteins in these three expression systems.
有许多蛋白质组学应用需要大量纯化蛋白质,但同时生产大量不同蛋白质仍然是一项极具挑战性的任务。为满足科学界的需求,我们开发了一种人类蛋白质生产流程。利用高通量(HT)方法,我们将31种全长蛋白质的基因转移到三种表达载体中,并在大肠杆菌以及两种商业化无细胞(CF)系统(小麦胚提取物(WGE)和HeLa细胞提取物(HCE))中作为N端HaloTag融合蛋白表达该蛋白集。通过用荧光HaloTag配体特异性共价标记融合蛋白并在LabChip(®) GX微流控毛细管凝胶电泳仪上检测其荧光来评估表达情况。这种自动化的HT分析提供了重组蛋白的定性和定量评估。大肠杆菌仅能在上清液组分中表达20%的测试蛋白集,产量≥20 μg,而CF系统的成功率≥83%。我们使用自动化的HaloTag纯化方法纯化表达的蛋白质。我们分别从大肠杆菌、WGE和HCE中纯化了20%、33%和42%的测试蛋白集,产量≥1 μg且纯度≥90%。基于这些观察结果,我们制定了一种在这三种表达系统中生产全长人类蛋白质的分类策略。