Institute of Chemistry, The Minerva Center for Complex Bio-hybrid Systems, The Hebrew University of Jerusalem, Jerusalem, Israel.
Institute of Life Science, The Hebrew University of Jerusalem, Jerusalem, Israel.
Nat Commun. 2021 Jul 9;12(1):4224. doi: 10.1038/s41467-021-24512-y.
Nucleic acid-based constitutional dynamic networks (CDNs) have recently emerged as versatile tools to control a variety of catalytic processes. A key challenge in the application of these systems is achieving intercommunication between different CDNs to mimic the complex interlinked networks found in cellular biology. In particular, the possibility to interface photochemical 'energy-harvesting' processes with dark-operating 'metabolic' processes, in a similar way to plants, represents an up to now unexplored yet enticing research direction. The present study introduces two CDNs that allow the intercommunication of photocatalytic and dark-operating catalytic functions mediated by environmental components that facilitate the dynamic coupling of the networks. The dynamic feedback-driven intercommunication of the networks is accomplished via information transfer between the two CDNs effected by hairpin fuel strands in the environment of the system, leading to the coupling of the photochemical and dark-operating modules.
基于核酸的构态动态网络(CDNs)最近作为控制各种催化过程的多功能工具出现。在这些系统的应用中,一个关键的挑战是实现不同 CDNs 之间的相互通信,以模拟细胞生物学中复杂的互联网络。特别是,以类似于植物的方式将光化学“能量收集”过程与暗操作“代谢”过程进行接口,代表了一个迄今为止尚未探索但诱人的研究方向。本研究介绍了两个 CDNs,允许通过环境组件介导的光催化和暗操作催化功能的相互通信,这些环境组件促进了网络的动态耦合。通过系统环境中的发夹燃料链在两个 CDNs 之间进行信息传递,实现了网络的动态反馈驱动相互通信,从而将光化学和暗操作模块耦合在一起。