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Programming the dynamics of biochemical reaction networks

机译:编程生化反应网络的动力学

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摘要

The development of complex self-organizing molecular systems for future nanotechnology requires not only robust formation of molecular structures by self-assembly but also precise control over their temporal dynamics. As an exquisite example of such control, in this issue of ACS Nano, Fujii and Rondelez demonstrate a particularly compact realization of a molecular "predator-prey" ecosystem consisting of only three DNA species and three enzymes. The system displays pronounced oscillatory dynamics, in good agreement with the predictions of a simple theoretical model. Moreover, its considerable modularity also allows for ecological studies of competition and cooperation within molecular networks.
机译:用于未来纳米技术的复杂的自组织分子系统的发展不仅需要通过自组装牢固地形成分子结构,还需要对其时间动态的精确控制。作为这种控制的一个很好的例子,在本期的ACS Nano中,Fujii和Rondelez展示了一种非常紧凑的分子“捕食者—猎物”生态系统的紧凑实现,该生态系统仅包含三个DNA物种和三个酶。该系统显示出明显的振荡动力学,与简单理论模型的预测非常吻合。此外,其相当可观的模块化还允许对分子网络内竞争与合作进行生态研究。

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