Hochrein Lena, Machens Fabian, Messerschmidt Katrin, Mueller-Roeber Bernd
University of Potsdam, Cell2Fab Research Unit, Karl-Liebknecht-Str. 24-25, 14476 Potsdam, Germany.
University of Potsdam, Department of Molecular Biology, Karl-Liebknecht-Str. 24-25, 14476 Potsdam, Germany.
Nucleic Acids Res. 2017 Sep 6;45(15):9193-9205. doi: 10.1093/nar/gkx610.
Highly regulated induction systems enabling dose-dependent and reversible fine-tuning of protein expression output are beneficial for engineering complex biosynthetic pathways. To address this, we developed PhiReX, a novel red/far-red light-regulated protein expression system for use in Saccharomyces cerevisiae. PhiReX is based on the combination of a customizable synTALE DNA-binding domain, the VP64 activation domain and the light-sensitive dimerization of the photoreceptor PhyB and its interacting partner PIF3 from Arabidopsis thaliana. Robust gene expression and high protein levels are achieved by combining genome integrated red light-sensing components with an episomal high-copy reporter construct. The gene of interest as well as the synTALE DNA-binding domain can be easily exchanged, allowing the flexible regulation of any desired gene by targeting endogenous or heterologous promoter regions. To allow low-cost induction of gene expression for industrial fermentation processes, we engineered yeast to endogenously produce the chromophore required for the effective dimerization of PhyB and PIF3. Time course experiments demonstrate high-level induction over a period of at least 48 h.
高度可控的诱导系统能够实现蛋白质表达量的剂量依赖性和可逆微调,这对于构建复杂的生物合成途径非常有益。为了解决这个问题,我们开发了PhiReX,这是一种用于酿酒酵母的新型红/远红光调控的蛋白质表达系统。PhiReX基于可定制的合成转录激活因子样效应物(synTALE)DNA结合结构域、VP64激活结构域以及来自拟南芥的光感受器phyB及其相互作用伴侣PIF3的光敏感二聚化的组合。通过将基因组整合的红光感应组件与附加型高拷贝报告基因构建体相结合,实现了强大的基因表达和高蛋白水平。感兴趣的基因以及synTALE DNA结合结构域可以轻松交换,通过靶向内源或异源启动子区域,能够灵活调控任何所需基因。为了实现工业发酵过程中基因表达的低成本诱导,我们对酵母进行了工程改造,使其能够内源性产生phyB和PIF3有效二聚化所需的发色团。时间进程实验表明,在至少48小时的时间内能够实现高水平诱导。