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核糖核酸酶响应性DNA纳米开关

Ribonuclease-Responsive DNA Nanoswitches.

作者信息

Chandrasekaran Arun Richard, Trivedi Ruju, Halvorsen Ken

机构信息

The RNA Institute, University at Albany, State University of New York, Albany, NY 12222, USA.

Twitter: @arunrichardc.

出版信息

Cell Rep Phys Sci. 2020 Jul 22;1(7). doi: 10.1016/j.xcrp.2020.100117.

Abstract

DNA has been used in the construction of dynamic DNA devices that can reconfigure in the presence of external stimuli. These nanodevices have found uses in fields ranging from biomedical to materials science applications. Here, we report a DNA nanoswitch that can be reconfigured using ribonucleases (RNases) and explore two applications: biosensing and molecular computing. For biosensing, we show the detection of RNase H and other RNases in relevant biological fluids and temperatures, as well as inhibition by the known enzyme inhibitor kanamycin. For molecular computing, we show that RNases can be used to enable erasing, write protection, and erase-rewrite functionality for information-encoding DNA nanoswitches. The simplistic mix-and-read nature of the ribonuclease-activated DNA nanoswitches could facilitate their use in assays for identifying RNase contamination in biological samples or for the screening and characterization of RNase inhibitors.

摘要

DNA已被用于构建动态DNA装置,这种装置可在外部刺激存在的情况下重新配置。这些纳米装置已在从生物医学到材料科学应用等诸多领域得到应用。在此,我们报告一种可使用核糖核酸酶(RNases)进行重新配置的DNA纳米开关,并探索其两种应用:生物传感和分子计算。对于生物传感,我们展示了在相关生物流体和温度下对RNase H及其他核糖核酸酶的检测,以及已知酶抑制剂卡那霉素的抑制作用。对于分子计算,我们表明核糖核酸酶可用于实现对信息编码DNA纳米开关的擦除、写保护和擦除 - 重写功能。核糖核酸酶激活的DNA纳米开关简单的混合读取特性可促进其在检测生物样品中核糖核酸酶污染或核糖核酸酶抑制剂筛选及表征的分析中应用。

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