Liang Joe C, Smolke Christina D
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA, USA.
Methods Mol Biol. 2012;848:439-54. doi: 10.1007/978-1-61779-545-9_27.
A synthetic gene-regulatory device platform was described by modularly assembling three RNA components encoding distinct functions of sensing, transmission, and actuation. The molecular binding at the sensor component is translated by the transmitter component through a strand-displacement event to modulate activity of the actuator component, which then interacts with cellular transcriptional machinery to affect gene expression levels. Here, we provide some general guidelines on linking RNA components to construct gene-regulatory devices and strategies to tune device regulatory activities through an RNA folding -program for specific cellular applications.
通过模块化组装编码传感、传递和驱动不同功能的三个RNA组件,描述了一种合成基因调控装置平台。传感器组件处的分子结合由传递器组件通过链置换事件进行转换,以调节执行器组件的活性,然后执行器组件与细胞转录机制相互作用以影响基因表达水平。在此,我们提供了一些关于连接RNA组件以构建基因调控装置的一般指导原则,以及通过用于特定细胞应用的RNA折叠程序来调节装置调控活性的策略。