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A label-free and enzyme-free signal amplification strategy for a sensitive RNase H activity assay

机译:label-free enzyme-free信号放大策略一个敏感的核糖核酸酶H活动分析

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摘要

We herein describe a label-free and enzyme-free signal amplification strategy for the sensitive determination of ribonuclease H (RNase H) activity, which relies on the target-triggered catalytic hairpin assembly (CHA) in conjunction with a G-quadruplex specific fluorescent binder, N-methyl mesoporphyrin IX (NMM). In the absence of RNase H, the RNA/DNA duplex serving as a substrate for RNase H cannot initiate the execution of CHA that produces G-quadruplexes; so NMM shows a low fluorescence signal. In contrast, the presence of RNase H that degrades RNA in the RNA/DNA duplex releases DNA designed to function as the catalyst for CHA. This consequently promotes the efficient CHA and generates a large number of G-quadruplexes with a significantly enhanced fluorescence signal from NMM. Based on this label-free and enzyme-free signal amplification strategy, we successfully determined the RNase H activity with a detection limit of 0.037 U mL(-1) and screened potential RNase H inhibitors. Our results suggest that the developed system is a promising platform for a cost-effective, sensitive enzyme activity assay and inhibitor screening.
机译:我们在此描述label-free enzyme-free信号放大战略敏感核糖核酸酶测定H(前体)活动,这依赖于target-triggered催化发夹组装(CHA)在一起G-quadruplex特定荧光粘合剂,N-methyl mesoporphyrin第九(NMM)。核糖核酸酶H的RNA / DNA双工担任衬底为核糖核酸酶H不能启动执行CHA产生G-quadruplexes;NMM显示了低荧光信号。核糖核酸酶的降解RNA的HRNA / DNA双释放DNA设计功能作为茶的催化剂。促进有效CHA并生成一个大G-quadruplexes数量显著从NMM增强的荧光信号。这个label-free enzyme-free信号放大策略,我们成功确定了检测活动的前体限制为0.037 U mL(1)和筛选潜力核糖核酸酶抑制剂。开发的系统是一个有前途的平台划算,敏感的酶活性测定和抑制剂的筛选。

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