纳米器件
脱氧核酶
核糖核酸
DNA
化学
纳米技术
分子机器
底漆(化妆品)
信号(编程语言)
电子线路
计算生物学
生物系统
合成生物学
计算机科学
生物化学
生物
基因
工程类
材料科学
电气工程
有机化学
程序设计语言
作者
Jocelyn Y. Kishi,Thomas E. Schaus,Nikhil Gopalkrishnan,Feng Xuan,Peng Yin
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2017-11-06
卷期号:10 (2): 155-164
被引量:228
摘要
DNA performs diverse functional roles in biology, nanotechnology and biotechnology, but current methods for autonomously synthesizing arbitrary single-stranded DNA are limited. Here, we introduce the concept of primer exchange reaction (PER) cascades, which grow nascent single-stranded DNA with user-specified sequences following prescribed reaction pathways. PER synthesis happens in a programmable, autonomous, in situ and environmentally responsive fashion, providing a platform for engineering molecular circuits and devices with a wide range of sensing, monitoring, recording, signal-processing and actuation capabilities. We experimentally demonstrate a nanodevice that transduces the detection of a trigger RNA into the production of a DNAzyme that degrades an independent RNA substrate, a signal amplifier that conditionally synthesizes long fluorescent strands only in the presence of a particular RNA signal, molecular computing circuits that evaluate logic (AND, OR, NOT) combinations of RNA inputs, and a temporal molecular event recorder that records in the PER transcript the order in which distinct RNA inputs are sequentially detected. Primer exchange reaction (PER) cascades have now been used to grow nascent single-stranded DNA with user-specified sequences following prescribed reaction pathways. PER synthesis occurs in a programmable, autonomous, in situ and environmentally responsive fashion, providing a platform for engineering molecular circuits and devices with a wide range of sensing, monitoring, recording, signal processing and actuation capabilities.
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