Venture Business Laboratory, Ehime University, 3 Bunkyo-cho, Matsuyama, Ehime, 790-8577 Japan.
Plant Cell Physiol. 2013 Oct;54(10):1724-35. doi: 10.1093/pcp/pct115. Epub 2013 Aug 21.
The cyanobacterium Synechococcus elongatus PCC 7942 is a major model species for studies of photosynthesis. It is are also a potential cell factory for the production of renewable biofuels and valuable chemicals. We employed engineered riboswitches to control translational initiation of target genes in this cyanobacterium. A firefly luciferase reporter assay revealed that three theophylline riboswitches performed as expected in the cyanobacterium. Riboswitch-E* exhibited very low leaky expression of luciferase and superior and dose-dependent on/off regulation of protein expression by theophylline. The maximum magnitude of the induction vs. basal level was ∼190-fold. Furthermore, the induction level was responsive to a wide range of theophylline concentrations in the medium, from 0 to 2 mM, facilitating the fine-tuning of luciferase expression. We adapted this riboswitch to another gene regulation system, in which expression of the circadian clock kaiC gene product is controlled by the theophylline concentration in the culture medium. The results demonstrated that the adequately adjusted expression level of KaiC restored complete circadian rhythm in the kaiC-deficient arrhythmic mutant. This theophylline-dependent riboswitch system has potential for various applications as a useful genetic tool in cyanobacteria.
集胞藻 PCC 7942 是研究光合作用的主要模式生物。它也是生产可再生生物燃料和有价值化学品的潜在细胞工厂。我们在这种蓝藻中使用了工程化的核糖开关来控制目标基因的翻译起始。萤火虫荧光素酶报告基因检测表明,三种茶碱核糖开关在蓝藻中表现正常。核糖开关 E*表现出非常低的荧光素漏表达,以及对茶碱的优异的、剂量依赖性的蛋白表达开/关调控。诱导与基础水平的最大比值约为 190 倍。此外,诱导水平对培养基中茶碱浓度的广泛范围具有响应性,从 0 到 2 mM,有利于荧光素表达的微调。我们将该核糖开关适用于另一种基因调控系统,其中生物钟 kaiC 基因产物的表达受培养基中茶碱浓度的控制。结果表明,经过适当调整的 KaiC 表达水平恢复了 kaiC 缺失节律异常突变体的完整昼夜节律。这种茶碱依赖性核糖开关系统具有作为蓝藻中有用遗传工具的各种应用潜力。