Cell-Free Science and Technology Research Center and Venture Business Laboratory, Ehime University, Matsuyama, Japan.
Nat Protoc. 2010 Feb;5(2):227-38. doi: 10.1038/nprot.2009.207. Epub 2010 Jan 21.
Biochemical characterization of each gene product encoded in the genome is essential to understand how cells are regulated. The bottleneck has been and still is in how the gene products can be obtained. The wheat cell-free protein synthesis system we have developed is a powerful method for preparation of many different proteins at a time and also for preparation of large amounts of specific proteins for biochemical and structural analyses. Here, we show a method for preparation of the wheat embryo extract useful for the cell-free reactions, by which 5 ml of a high-activity extract is obtained in 4-5 d. We also describe the methods for small- and large-scale protein synthesis by hands-down operations with the use of mRNAs prepared by transcription of PCR products and pEU plasmids harboring the target cDNAs, which need 2-4 d excepting the time required for plasmid preparation.
对基因组中编码的每个基因产物进行生化特性分析对于理解细胞如何被调控是至关重要的。其瓶颈一直以来在于如何获得这些基因产物。我们开发的小麦无细胞蛋白合成系统是一种同时制备多种不同蛋白的强大方法,也可用于大量制备用于生化和结构分析的特定蛋白。在这里,我们展示了一种制备用于无细胞反应的小麦胚提取物的方法,通过该方法可在 4-5 天内获得 5 毫升高活性的提取物。我们还描述了通过使用 PCR 产物转录制备的 mRNA 和含有目的 cDNA 的 pEU 质粒进行小规模和大规模蛋白合成的方法,除了质粒制备所需的时间外,这些方法总共需要 2-4 天。