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首页> 外文期刊>Microbial Cell Factories >Engineering an inducible gene expression system for Bacillus subtilis from a strong constitutive promoter and a theophylline-activated synthetic riboswitch
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Engineering an inducible gene expression system for Bacillus subtilis from a strong constitutive promoter and a theophylline-activated synthetic riboswitch

机译:从强大的组成型启动子和茶碱激活的合成核糖开关构建枯草芽孢杆菌的诱导型基因表达系统

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Background Synthetic riboswitches have been increasingly used to control and tune gene expression in diverse organisms. Although a set of theophylline-responsive riboswitches have been developed for bacteria, fully functional expression elements mediated by synthetic riboswitches in Bacillus subtilis are rarely used because of the host-dependent compatibility between the promoters and riboswitches. Results A novel genetic element composed of the promoter P43 and a theophylline-riboswitch was developed and characterized in B. subtilis . When combined with a P43 promoter (P43′-riboE1), the theophylline-riboswitch successfully switched the constitutive expression pattern of P43 to an induced pattern. The expression mediated by the novel element could be activated at the translational level by theophylline with a relatively high induction ratio. The induction ratios for P43′-riboE1 by 4-mM theophylline were elevated during the induction period. The level of induced expression was dependent on the theophylline dose. Correspondingly, the induction ratios gradually increased in parallel with the elevated dose of theophylline. Importantly, the induced expression level was higher than three other strong constitutive promoters including PsrfA, PaprE, and the native P43. It was found that the distance between the SD sequence within the expression element and the start codon significantly influenced both the level of induced expression and the induction ratio. A 9-bp spacer was suitable for producing desirable expression level and induction ratio. Longer spacer reduced the activation efficiency. Importantly, the system successfully overexpressed β-glucuronidase at equal levels, and induction ratio was similar to that of GFP. Conclusion The constructed theophylline-inducible gene expression system has broad compatibility and robustness, which has great potential in over-production of pharmaceutical and industrial proteins and utilization in building more complex gene circuits.
机译:背景技术合成核糖开关已经越来越多地用于控制和调节多种生物中的基因表达。尽管已经开发了一组用于茶的茶碱响应性核糖开关,但是由于启动子和核糖开关之间的宿主依赖性相容性,很少使用枯草芽孢杆菌中合成核糖开关介导的全功能表达元件。结果在枯草芽孢杆菌中建立了由启动子P43和茶碱-核糖开关组成的新型遗传元件。当与P43启动子(P43'-riboE1)结合时,茶碱-核糖开关成功地将P43的组成型表达模式转换为诱导模式。由新元素介导的表达可以被茶碱以相对较高的诱导率在翻译水平上激活。在诱导期间,4-mM茶碱对P43'-riboE1的诱导率升高。诱导表达的水平取决于茶碱剂量。相应地,诱导率随着茶碱剂量的增加而逐渐增加。重要的是,诱导的表达水平高于其他三个强组成型启动子,包括P srfA ,P aprE 和天然P43。发现表达元件内的SD序列与起始密码子之间的距离显着影响诱导表达的水平和诱导率。 9bp的间隔子适合于产生期望的表达水平和诱导率。较长的垫片会降低激活效率。重要的是,该系统成功地以相同的水平过量表达了β-葡萄糖醛酸苷酶,并且诱导率与GFP相似。结论构建的茶碱诱导型基因表达系统具有广泛的相容性和鲁棒性,在药物和工业蛋白质的过量生产以及构建更复杂的基因回路中具有巨大的潜力。

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