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Building in vitro transcriptional regulatory networks by successively integrating multiple functional circuit modules

机译:通过连续集成多个功能电路模块来构建体外转录监管网络

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摘要

The regulation of cellular dynamics and responses to stimuli by genetic regulatory networks suggests how in vitro chemical reaction networks might analogously direct the dynamics of synthetic materials or chemistries. A key step in developing genetic regulatory network analogues capable of this type of sophisticated regulation is the integration of multiple coordinated functions within a single network. Here, we demonstrate how such functional integration can be achieved using in vitro transcriptional genelet circuits that emulate essential features of cellular genetic regulatory networks. By successively incorporating functional genelet modules into a bistable circuit, we construct an integrated regulatory network that dynamically changes its state in response to upstream stimuli and coordinates the timing of downstream signal expression. We use quantitative models to guide module integration and develop strategies to mitigate undesired interactions between network components that arise as the size of the network increases. This approach could enable the construction of in vitro networks capable of multifaceted chemical and material regulation.
机译:通过遗传调节网络对蜂窝动力学的调节和对刺激的反应表明,体外化学反应网络如何类似地指导合成材料或化学物质的动态。开发能够这种复杂调节的遗传调节网络类似物的关键步骤是在单个网络中集成多个协调功能。在这里,我们展示了如何使用在体外转录的基因电路中实现这种功能集成,其模拟细胞遗传调节网络的基本特征。通过连续地将功能性Genelet模块掺入双稳态电路中,我们构建一个集成的调节网络,该网络响应上游刺激而动态地改变其状态,并协调下游信号表达的时序。我们使用定量模型来指导模块集成,并开发策略,以减轻由于网络大小而产生的网络组件之间的不期望的交互。这种方法可以实现能够进行多方面的化学和材料调节的体外网络的构建。

著录项

  • 来源
    《Nature Chemistry》 |2019年第9期|共10页
  • 作者单位

    Johns Hopkins Univ Dept Chem &

    Biomol Engn Baltimore MD 21218 USA;

    Johns Hopkins Univ Dept Chem &

    Biomol Engn Baltimore MD 21218 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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