Horbal L, Luzhetskyy A
Helmholtz Institute for Pharmaceutical Research, 66123 Saarbrücken, Germany; University of Saarland, Pharmaceutical Biotechnology, 66123 Saarbrucken, Germany.
Helmholtz Institute for Pharmaceutical Research, 66123 Saarbrücken, Germany; University of Saarland, Pharmaceutical Biotechnology, 66123 Saarbrucken, Germany.
Metab Eng. 2016 Sep;37:11-23. doi: 10.1016/j.ymben.2016.03.008. Epub 2016 Mar 31.
Here, we present a novel scaffolding architecture of an inducible regulatory device. This dual control system is completely silent in the off stage and is coupled to the regulation of gene expression at both the transcriptional and translational levels. This system also functions as an AND gate. We demonstrated the effectiveness of the cumate-riboswitch dual control system for the control of pamamycin production in Streptomyces albus. Placing the cre recombinase gene under the control of this system permitted the construction of synthetic devices with non-volatile memory that sense the signal and respond by altering DNA at the chromosomal level, thereby producing changes that are heritable. In addition, we present a library of synthetic inducible promoters based on the previously described cumate switch. With only one inducer and different promoters, we demonstrate that simultaneous modulation of the expression of several genes to different levels in various operons is possible. Because all modules of the AND gates are functional in bacteria other than Streptomyces, we anticipate that these regulatory devices can be used to control gene expression in other Actinobacteria. The features described in this study make these systems promising tools for metabolic engineering and biotechnology in Actinobacteria.
在此,我们展示了一种新型的可诱导调控装置的支架结构。这种双控系统在关闭阶段完全沉默,并在转录和翻译水平上与基因表达调控相耦合。该系统还起到“与”门的作用。我们证明了香豆酸盐核糖开关双控系统对白色链霉菌中帕马霉素生产的控制效果。将cre重组酶基因置于该系统的控制之下,使得构建具有非挥发性记忆的合成装置成为可能,该装置能够感知信号并通过在染色体水平上改变DNA做出反应,从而产生可遗传的变化。此外,我们基于先前描述的香豆酸盐开关展示了一个合成可诱导启动子文库。仅使用一种诱导剂和不同的启动子,我们证明了在各种操纵子中同时将几个基因的表达调节到不同水平是可行的。由于“与”门的所有模块在链霉菌以外的细菌中都具有功能,我们预计这些调控装置可用于控制其他放线菌中的基因表达。本研究中描述的这些特性使这些系统成为放线菌代谢工程和生物技术中有前景的工具。