Ogawa Atsushi, Masuoka Hiroki, Ota Tsubasa
Proteo-Science Center, Ehime University , 3 Bunkyo-cho, Matsuyama, Ehime 790-8577, Japan.
ACS Synth Biol. 2017 Sep 15;6(9):1656-1662. doi: 10.1021/acssynbio.7b00124. Epub 2017 Jun 15.
We constructed novel artificial riboswitches that function in a eukaryotic translation system (wheat germ extract), by rationally implanting an in vitro-selected aptamer into the intergenic internal ribosome entry site (IRES) of Plautia stali intestine virus. These eukaryotic OFF-riboswitches (OFF-eRSs) ligand-dose-dependently downregulate IRES-mediated translation without hybridization switches, which typical riboswitches utilize for gene regulation. The hybridization-switch-free mechanism not only allows for easy design but also requires less energy for regulation, resulting in a higher switching efficiency than hybridization-switch-based OFF-eRSs provide. In addition, even a small ligand such as theophylline can induce satisfactory repression, in contrast to other types of OFF-eRSs that modulate the 5' cap-dependent canonical translation. Because our proposed hybridization-switch-free OFF-eRSs are based on a versatile IRES that functions well in many types of eukaryotic translation systems, they would be widely usable elements for synthetic gene circuits in both cell-free and cell-based synthetic biology.
我们通过将体外筛选的适配体合理植入斯氏普劳蒂亚肠道病毒的基因间内部核糖体进入位点(IRES),构建了在真核翻译系统(小麦胚芽提取物)中起作用的新型人工核糖开关。这些真核关闭型核糖开关(OFF-eRSs)在不使用典型核糖开关用于基因调控的杂交开关的情况下,以配体剂量依赖的方式下调IRES介导的翻译。无杂交开关机制不仅便于设计,而且调控所需能量更少,导致开关效率高于基于杂交开关的OFF-eRSs。此外,与其他调节5'帽依赖性经典翻译的OFF-eRSs类型不同,即使是小配体如茶碱也能诱导出令人满意的抑制作用。由于我们提出的无杂交开关的OFF-eRSs基于一种在多种真核翻译系统中都能良好发挥作用的通用IRES,它们将成为无细胞和基于细胞的合成生物学中合成基因电路广泛可用的元件。