适体
稳健性(进化)
工具箱
化学
分子开关
纳米技术
合成生物学
生物系统
生化工程
计算机科学
计算生物学
分子
材料科学
遗传学
有机化学
工程类
程序设计语言
生物化学
生物
基因
作者
Guan A. Wang,Xinghong Wu,Fangfang Chen,Chenlan Shen,Qianfan Yang,Feng Li
摘要
Aptamer switches are attractive nature-inspired tools for developing smart materials and nanodevices. However, the thermal robustness and programmability of current aptamer switches are often limited by their activation processes that are coupled with high reaction enthalpy. Here, we present an enthalpy-independent activation approach that harnesses toehold-exchange as a general framework to design aptamer switches. We demonstrate mathematically and experimentally that this approach is highly effective in improving thermal robustness and thus leads to better analytical performances of aptamer switches. Enhanced programmability is also demonstrated through fine-grained and dynamic tuning of effective affinities and dynamic ranges, as well as the construction of a synthetic DNA network that resembled biological signaling cascades. Our study not only enriches the current toolbox for engineering and controlling synthetic molecular switches but also offers new insights into their thermodynamic basis, which is critical for diverse synthetic biological designs and applications.
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