Department of Chemical and Biomolecular Engineering (BK 21+ program), KAIST, Daehak-ro 291, Yuseong-gu, Daejeon 305-338, Republic of Korea.
Nanoscale. 2017 Nov 2;9(42):16149-16153. doi: 10.1039/c7nr04060a.
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 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.
我们在此描述了一种无标记和无酶的信号放大策略,用于灵敏测定核糖核酸酶 H(RNase H)活性,该策略依赖于目标触发的催化发夹组装(CHA)与 G-四链体特异性荧光结合物 N-甲基 mesoporphyrin IX(NMM)的结合。在不存在 RNase H 的情况下,作为 RNase H 底物的 RNA/DNA 双链体不能启动产生 G-四链体的 CHA 执行;因此 NMM 显示出低荧光信号。相比之下,存在降解 RNA/DNA 双链体中 RNA 的 RNase H 会释放设计为 CHA 催化剂的 DNA。这进而促进了高效的 CHA,并产生了大量的 G-四链体,从而使 NMM 的荧光信号显著增强。基于这种无标记和无酶的信号放大策略,我们成功地测定了 RNase H 活性,检测限为 0.037 U mL,并筛选了潜在的 RNase H 抑制剂。我们的结果表明,所开发的系统是一种用于经济高效、灵敏的酶活性测定和抑制剂筛选的有前途的平台。