生物分子
DNA
合成生物学
纳米技术
共域化
核糖核酸
生物物理学
生物传感器
催化作用
生物系统
自催化
动力学
化学
材料科学
计算生物学
生物
细胞生物学
物理
生物化学
基因
量子力学
作者
Zhimei Huang,Xianbo Ma,Fengze Jiang,Rong Wang,Zhenkun Wu,Yi Lu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2023-06-22
卷期号:23 (13): 6042-6049
被引量:21
标识
DOI:10.1021/acs.nanolett.3c01349
摘要
DNA walkers, which are synthetic nanodevices that drive the processive movement of nucleic acids along a well-designed track, have emerged as a powerful tool in biosynthesis, biocomputing, and biosensing due to their exquisite programmability, good biocompatibility, and efficient signal amplification capacity. However, many existing approaches are still hindered by limited reaction kinetics. Herein, we designed a dual spatially localized DNA walker that utilized bipedal catalysts to drive high-speed stochastic movement along three-dimensional tracks via a proximity-driven catalytic hairpin assembly. We demonstrated that the dual colocalization of autocatalytic circuits significantly increased their local concentrations and accelerated reaction kinetics through proximity. We also showed that the use of bipedal catalysts further improved reaction rates compared with unipedal catalysts. Taking advantage of these unique features, we constructed an RNA-responsive PCHA walker for mRNA imaging in live cells, providing a novel and efficient tool for biomolecule detection and biological functions regulation.
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