化学
控制重构
聚合物
DNA
核糖核酸
纳米技术
共焦
荧光
动力控制
有机化学
催化作用
物理
嵌入式系统
光学
基因
材料科学
量子力学
生物化学
计算机科学
作者
Serena Gentile,Erica Del Grosso,Passa E. Pungchai,Elisa Franco,Leonard J. Prins,Francesco Ricci
摘要
We demonstrate a strategy that allows for the spontaneous reconfiguration of self-assembled DNA polymers exploiting RNA as chemical fuel. To do this, we have rationally designed orthogonally addressable DNA building blocks that can be transiently deactivated by RNA fuels and subtracted temporarily from participation in the self-assembly process. Through a fine modulation of the rate at which the building blocks are reactivated we can carefully control the final composition of the polymer and convert a disordered polymer in a higher order polymer, which is disfavored from a thermodynamic point of view. We measure the dynamic reconfiguration via fluorescent signals and confocal microscopy, and we derive a kinetic model that captures the experimental results. Our approach suggests a novel route toward the development of biomolecular materials in which engineered chemical reactions support the autonomous spatial reorganization of multiple components.
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