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通过实时监测靶标触发的滚环扩增来测定 RNase H 活性。

Determination of RNase H activity via real-time monitoring of target-triggered rolling circle amplification.

机构信息

Department of Chemical and Biomolecular Engineering (BK 21+ program), KAIST, Daehak-ro 291, Yuseong-gu, Daejeon, 305-338, Republic of Korea.

Department of Biological Engineering, College of Engineering, Konkuk University, Seoul, 05029, Republic of Korea.

出版信息

Mikrochim Acta. 2017 Dec 14;185(1):53. doi: 10.1007/s00604-017-2610-8.

Abstract

The authors describe a method for real-time monitoring of the activity of ribonuclease H (RNase H). It is based on target-triggered rolling circle amplification (RCA). It utilizes a specially designed primer that contains a RNA sequence in the center and an amino group at the 3'-end. In the absence of RNase H, the primer when hybridized to a circular DNA template is not extended by DNA polymerase due to the amino group at the 3'-end. In contrast, the presence of RNase H specifically degrades the RNA sequence of the primer hybridized to the circular DNA template. This results in the conversion of the 3'-amino group to a 3'-hydroxy group and thereby enables the extension reaction promoted by DNA polymerase. This, consequently, leads to efficient RCA producing a long concatenated DNA strand. Its generation can be monitored in real-time by using the fluorescent dye SYBR green II which is specific for single-stranded DNA. Based on this RNase H-triggered RCA, RNase H activity can be selectively determined at levels as low as 0.019 U·mL with a total assay time of <5 min. The diagnostic capability of this assay was demonstrated by monitoring the activity of RNase H in tumor cells. Graphical abstract Schematic of real-time monitoring of ribonuclease H (RNase H) activity based on target-triggered rolling circle amplification (RCA). RNase H that degrades RNA in primer, converts 3'-amino group to 3'-hydroxy group, which promotes RCA with fluorescence enhancement of the probe SYBR green II.

摘要

作者描述了一种实时监测核糖核酸酶 H(RNase H)活性的方法。它基于靶标触发的滚环扩增(RCA)。它利用一种特殊设计的引物,其中央包含一段 RNA 序列,3' 端带有一个氨基。在没有 RNase H 的情况下,由于 3' 端的氨基,当引物与环形 DNA 模板杂交时,DNA 聚合酶不会延伸引物。相比之下,RNase H 的存在特异性地降解与环形 DNA 模板杂交的引物的 RNA 序列。这导致 3' 氨基转化为 3' 羟基,从而使 DNA 聚合酶促进的延伸反应成为可能。这继而导致高效的 RCA 产生长的串联 DNA 链。其生成可以通过使用特异性结合单链 DNA 的荧光染料 SYBR green II 进行实时监测。基于这种 RNase H 触发的 RCA,可以选择性地以低至 0.019 U·mL 的水平测定 RNase H 活性,总测定时间<5 分钟。通过监测肿瘤细胞中 RNase H 的活性,证明了该测定法的诊断能力。

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