Ko Wooseok, Kim Sanggil, Jo Kyubong, Lee Hyun Soo
Department of Chemistry, Sogang University, Seoul, 121-742, Republic of Korea.
Amino Acids. 2016 Feb;48(2):357-63. doi: 10.1007/s00726-015-2087-x. Epub 2015 Sep 10.
The genetic incorporation of unnatural amino acids (UAAs) into proteins has been a useful tool for protein engineering. However, most UAAs are expensive, and the method requires a high concentration of UAAs, which has been a drawback of the technology, especially for large-scale applications. To address this problem, a method to recycle cultured UAAs was developed. The method is based on recycling a culture medium containing the UAA, in which some of essential nutrients were resupplemented after each culture cycle, and induction of protein expression was controlled with glucose. Under optimal conditions, five UAAs were recycled for up to seven rounds of expression without a decrease in expression level, cell density, or incorporation fidelity. This method can generally be applied to other UAAs; therefore, it is useful for reducing the cost of UAAs for genetic incorporation and helpful for expanding the use of the technology to industrial applications.
将非天然氨基酸(UAA)基因掺入蛋白质一直是蛋白质工程的一项有用工具。然而,大多数非天然氨基酸价格昂贵,且该方法需要高浓度的非天然氨基酸,这一直是该技术的一个缺点,尤其是在大规模应用中。为了解决这个问题,开发了一种回收培养的非天然氨基酸的方法。该方法基于回收含有非天然氨基酸的培养基,在每个培养周期后重新补充一些必需营养物质,并通过葡萄糖控制蛋白质表达的诱导。在最佳条件下,五种非天然氨基酸可循环使用多达七轮表达,而表达水平、细胞密度或掺入保真度均无下降。该方法通常可应用于其他非天然氨基酸;因此,它有助于降低基因掺入中非天然氨基酸的成本,并有助于将该技术扩展到工业应用。