Muranaka Norihito, Sharma Vandana, Nomura Yoko, Yokobayashi Yohei
Department of Biomedical Engineering, University of California, Davis, 451 Health Sciences Drive, Davis, CA 95616, USA.
Nucleic Acids Res. 2009 Apr;37(5):e39. doi: 10.1093/nar/gkp039. Epub 2009 Feb 3.
Engineered gene switches and circuits that can sense various biochemical and physical signals, perform computation, and produce predictable outputs are expected to greatly advance our ability to program complex cellular behaviors. However, rational design of gene switches and circuits that function in living cells is challenging due to the complex intracellular milieu. Consequently, most successful designs of gene switches and circuits have relied, to some extent, on high-throughput screening and/or selection from combinatorial libraries of gene switch and circuit variants. In this study, we describe a generic and efficient platform for selection and screening of gene switches and circuits in Escherichia coli from large libraries. The single-gene dual selection marker tetA was translationally fused to green fluorescent protein (gfpuv) via a flexible peptide linker and used as a dual selection and screening marker for laboratory evolution of gene switches. Single-cycle (sequential positive and negative selections) enrichment efficiencies of >7000 were observed in mock selections of model libraries containing functional riboswitches in liquid culture. The technique was applied to optimize various parameters affecting the selection outcome, and to isolate novel thiamine pyrophosphate riboswitches from a complex library. Artificial riboswitches with excellent characteristics were isolated that exhibit up to 58-fold activation as measured by fluorescent reporter gene assay.
能够感知各种生化和物理信号、进行计算并产生可预测输出的工程化基因开关和电路,有望极大地提升我们对复杂细胞行为进行编程的能力。然而,由于细胞内环境复杂,在活细胞中发挥作用的基因开关和电路的合理设计具有挑战性。因此,基因开关和电路的大多数成功设计在某种程度上都依赖于对基因开关和电路变体组合文库的高通量筛选和/或选择。在本研究中,我们描述了一种通用且高效的平台,用于从大型文库中筛选和选择大肠杆菌中的基因开关和电路。单基因双选标记tetA通过柔性肽接头与绿色荧光蛋白(gfpuv)进行翻译融合,并用作基因开关实验室进化的双选和筛选标记。在液体培养中含有功能性核糖开关的模型文库的模拟选择中,观察到单周期(顺序正负选择)富集效率>7000。该技术被应用于优化影响选择结果的各种参数,并从复杂文库中分离新型硫胺素焦磷酸核糖开关。通过荧光报告基因测定法,分离出了具有优异特性的人工核糖开关,其激活倍数高达58倍。