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小球藻病毒DNA连接酶对RNA模板末端连接的保真度以及一种具有更高直接RNA检测准确性的新型iLock检测法。

Fidelity of RNA templated end-joining by chlorella virus DNA ligase and a novel iLock assay with improved direct RNA detection accuracy.

作者信息

Krzywkowski Tomasz, Nilsson Mats

机构信息

Science for Life Laboratory, Department of Biochemistry and Biophysics, Stockholm University, SE-171 65 Solna, Sweden.

出版信息

Nucleic Acids Res. 2017 Oct 13;45(18):e161. doi: 10.1093/nar/gkx708.

Abstract

Ligation-based nucleic acid detection methods are primarily limited to DNA, since they exhibit poor performance on RNA. This is attributed to reduced end-joining efficiency and/or fidelity of ligases. Interestingly, chlorella virus DNA ligase (PBCV-1 DNA ligase) has recently been shown to possess high RNA-templated DNA end-joining activity; however, its fidelity has not yet been systematically evaluated. Herein, we characterized PBCV-1 ligase for its RNA-templated end-joining fidelity at single base mismatches in 3' and 5' DNA probe termini and found an overall limited end-joining fidelity. To improve the specificity in PBCV-1 ligase-driven RNA detection assays, we utilized structure-specific 5' exonucleolytic activity of Thermus aquaticus DNA polymerase, used in the invader assay. In the iLock (invader padLock) probe assay, padlock probe molecules are activated prior ligation thus the base at the probe ligation junction is read twice in order to aid successful DNA ligation: first, during structure-specific invader cleavage and then during sequence-specific DNA ligation. We report two distinct iLock probe activation mechanisms and systematically evaluate the assay specificity, including single nucleotide polymorphisms on RNA, mRNA and miRNA. We show significant increase in PBCV-1 ligation fidelity in the iLock probe assay configuration for RNA detection.

摘要

基于连接的核酸检测方法主要限于DNA,因为它们对RNA的检测效果不佳。这归因于连接酶的末端连接效率和/或保真度降低。有趣的是,小球藻病毒DNA连接酶(PBCV-1 DNA连接酶)最近被证明具有高的RNA模板化DNA末端连接活性;然而,其保真度尚未得到系统评估。在此,我们对PBCV-1连接酶在3'和5'DNA探针末端单碱基错配时的RNA模板化末端连接保真度进行了表征,发现其末端连接保真度总体有限。为了提高PBCV-1连接酶驱动的RNA检测分析的特异性,我们利用了用于入侵检测分析的嗜热栖热菌DNA聚合酶的结构特异性5'核酸外切酶活性。在iLock(入侵型PadLock)探针分析中,PadLock探针分子在连接前被激活,因此探针连接连接处的碱基被读取两次,以帮助成功进行DNA连接:首先,在结构特异性入侵切割过程中,然后在序列特异性DNA连接过程中。我们报告了两种不同的iLock探针激活机制,并系统地评估了分析特异性,包括RNA、mRNA和miRNA上的单核苷酸多态性。我们发现在用于RNA检测的iLock探针分析配置中,PBCV-1连接保真度显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9369/5737725/ae7e874e000a/gkx708fig1.jpg

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