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Engineering and characterization of fluorogenic glycine riboswitches

机译:荧光甘氨酸核糖开关的工程与表征

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A set of 12 fluorogenic glycine riboswitches with different thermodynamic and kinetic response properties was engineered. For the design of functional riboswitches, a three-part RNA approach was applied based on the idea of linking a RNA sensor, transmitter and actuator part together. For the RNA sensor and actuator part, we used the tandem glycine aptamer structure from Bacillus subtillis, and fluorogenic aptamer Spinach, respectively. To achieve optimal signal transduction from the sensor to the actuator, a riboswitch library with variable transmitter was screened with a microfluidic large-scale integration chip. This allowed us to establish the complete thermodynamic binding profiles of the riboswitch library. Glycine dissociation constants of the 12 strong fluorescence response riboswitches varied between 99.7 and 570 mu M. Furthermore, the kinetic glycine binding (k(on)), and dissociation (k(off)) rates, and corresponding energy barriers of the 10 strongest fluorescence response riboswitches were determined with the same chip platform. k(on) and k(off) were in the order of 10(-3)s(-1) and 10(-2)s(-1), respectively. Conclusively, we demonstrate that systematic screening of synthetic and natural linked RNA parts with microfluidic chip technology is an effective approach to rapidly generate fluorogenic metabolite riboswitches with a broad range of biophysical response properties.
机译:设计了一组12个具有不同热力学和动力学响应特性的荧光甘氨酸核糖开关。对于功能性核糖开关的设计,基于将RNA传感器,发射器和执行器部分链接在一起的想法,应用了三部分RNA方法。对于RNA传感器和促动器部分,我们分别使用了枯草芽孢杆菌和荧光适体菠菜的串联甘氨酸适体结构。为了实现从传感器到执行器的最佳信号转导,使用微流体大规模集成芯片筛选了具有可变发射器的核糖开关文库。这使我们能够建立核糖开关文库的完整热力学结合图谱。 12个强荧光响应核糖开关的甘氨酸解离常数在99.7和570μM之间变化。此外,10个最强荧光的动力学甘氨酸结合率(k(on))和解离率(k(off))以及相应的能垒使用相同的芯片平台确定反应核糖开关。 k(on)和k(off)的顺序分别为10(-3)s(-1)和10(-2)s(-1)。结论是,我们证明了使用微流体芯片技术对合成和天然连接的RNA零件进行系统筛选是一种有效产生具有广泛生物物理响应特性的荧光代谢物核糖开关的有效方法。

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