Endo Yaeta, Sawasaki Tatsuya
Cell-Free Science and Technology Research Center, Ehime University, Matsuyama, Japan.
Curr Opin Biotechnol. 2006 Aug;17(4):373-80. doi: 10.1016/j.copbio.2006.06.009. Epub 2006 Jul 7.
Following the success of genome sequencing projects, attention has now turned to studies of the structure and function of proteins. Although cell-based expression systems for protein production have been widely used, they have certain limitations in terms of the quality and quantity of the proteins produced and for high-throughput production. Many of these limitations can be circumvented by the use of cell-free translation systems. Among such systems, the wheat germ based system is of special interest for its eukaryotic nature; it has the significant advantage of producing eukaryotic multidomain proteins in a folded state. Several advances in the use of cell-free expression systems have been made in the past few years and successful applications of these systems to produce proteins for functional and structural biology studies have been reported.
随着基因组测序项目的成功,现在人们的注意力已转向蛋白质结构与功能的研究。尽管用于蛋白质生产的基于细胞的表达系统已被广泛使用,但它们在蛋白质生产的质量和数量以及高通量生产方面存在一定局限性。使用无细胞翻译系统可以规避其中许多局限性。在这类系统中,基于小麦胚的系统因其真核性质而特别受关注;它具有以折叠状态生产真核多结构域蛋白质的显著优势。在过去几年中,无细胞表达系统的使用取得了多项进展,并且已报道了这些系统在生产用于功能和结构生物学研究的蛋白质方面的成功应用。