Department of Computational Biology and Medical Sciences, Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5, Kashiwanoha, Kashiwa-shi, Chiba 277-8562, Japan.
Department of Materials Science and Chemistry, Graduate School of Engineering, University of Hyogo, Himeji 671-2201, Japan.
J Biochem. 2020 May 1;167(5):441-450. doi: 10.1093/jb/mvaa021.
We developed an in vitro translation system from yeast, reconstituted with purified translation elongation and termination factors and programmed by CrPV IGR IRES-containing mRNA, which functions in the absence of initiation factors. The system is capable of synthesizing the active reporter protein, nanoLuciferase, with a molecular weight of 19 kDa. The protein synthesis by the system is appropriately regulated by controlling its composition, including translation factors, amino acids and antibiotics. We found that a high eEF1A concentration relative to the ribosome concentration is critically required for efficient IRES-mediated translation initiation, to ensure its dominance over IRES-independent random internal translation initiation.
我们开发了一种来自酵母的体外翻译系统,该系统由纯化的翻译延伸和终止因子重新构成,并由含有 CrPV IGR IRES 的 mRNA 编程,该系统在没有起始因子的情况下发挥作用。该系统能够合成具有 19 kDa 分子量的活性报告蛋白,纳米荧光素酶。通过控制其组成,包括翻译因子、氨基酸和抗生素,系统可以对蛋白质合成进行适当的调节。我们发现,与核糖体浓度相比,eEF1A 的高浓度对于有效的 IRES 介导的翻译起始至关重要,以确保其优于 IRES 独立的随机内部翻译起始。