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首页> 外文期刊>Science Advances >Triggered reversible substitution of adaptive constitutional dynamic networks dictates programmed catalytic functions
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Triggered reversible substitution of adaptive constitutional dynamic networks dictates programmed catalytic functions

机译:触发性可逆组成性动态网络的替代决定了程序的催化功能

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摘要

The triggered substitution of networks and their resulting functions play an important mechanism in biological transformations, such as intracellular metabolic pathways and cell differentiation. We describe the triggered, cyclic, reversible intersubstitution of three nucleic acid–based constitutional dynamic networks (CDNs) and the programmed catalytic functions guided by the interconverting CDNs. The transitions between the CDNs are activated by nucleic acid strand displacement processes acting as triggers and counter triggers, leading to the adaptive substitution of the constituents and to emerging catalytic functions dictated by the compositions of the different networks. The quantitative evaluation of the compositions of the different CDNs is achieved by DNAzyme reporters and complementary electrophoresis experiments. By coupling a library of six hairpins to the interconverting CDNs, the CDN-guided, emerging, programmed activities of three different biocatalysts are demonstrated. The study has important future applications in the development of sensor systems, finite-state logic devices, and selective switchable catalytic assemblies.
机译:网络的触发取代及其产生的功能在生物转化(例如细胞内代谢途径和细胞分化)中起重要作用。我们描述了三个基于核酸的组成动态网络(CDN)的触发,循环,可逆取代,以及由相互转化的CDN引导的程序化催化功能。 CDN之间的过渡被充当触发和反触发的核酸链置换过程激活,从而导致成分的适应性取代和由不同网络组成决定的新兴催化功能。通过DNAzyme报道分子和互补电泳实验可对不同CDN的成分进行定量评估。通过将六个发夹的文库偶联至相互转化的CDN,可以证明三种不同生物催化剂的CDN引导的,新兴的程序化活性。该研究在传感器系统,有限状态逻辑器件和选择性可转换催化组件的开发中具有重要的未来应用。

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